CN208075532U - Lifting blade heated type three-cylinder drier - Google Patents

Lifting blade heated type three-cylinder drier Download PDF

Info

Publication number
CN208075532U
CN208075532U CN201820554941.3U CN201820554941U CN208075532U CN 208075532 U CN208075532 U CN 208075532U CN 201820554941 U CN201820554941 U CN 201820554941U CN 208075532 U CN208075532 U CN 208075532U
Authority
CN
China
Prior art keywords
pipe
heat
dryness storehouses
cylinder
thermal energy
Prior art date
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
CN201820554941.3U
Other languages
Chinese (zh)
Inventor
郭银浦
程长青
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.)
Mengzhou Yuanhong Drying Equipment Research and Development Co Ltd
Original Assignee
Mengzhou Yuanhong Drying Equipment Research and Development Co Ltd
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by Mengzhou Yuanhong Drying Equipment Research and Development Co Ltd filed Critical Mengzhou Yuanhong Drying Equipment Research and Development Co Ltd
Priority to CN201820554941.3U priority Critical patent/CN208075532U/en
Application granted granted Critical
Publication of CN208075532U publication Critical patent/CN208075532U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Landscapes

  • Drying Of Solid Materials (AREA)

Abstract

A kind of lifting blade heated type three-cylinder drier of the utility model includes three dryness storehouses, feeding equipment, exhaust apparatus, support roller, holder, driving device, gear ring, raceway, lifting heating apparatus, online moisture tester, drive set controller.Lifting heating apparatus is mounted in three dryness storehouses;Lifting heating apparatus includes plate-type heat-pipe, heat conducting pipe;The thermal energy that heat-conducting medium carries is transmitted to by lifting heating apparatus on the material in roller drying storehouse;Bellows elbow allows the work shift generated under rated load effect.Driving device sets different rotating speeds by the program of setting to drive the rotation of three dryness storehouses according to drive set controller.The moisture that gasification generates when dry materials is gone out by exhaust pipe by exhaust apparatus pump drainage, and controller of fan regulates and controls the rotating speed of the motor of wind turbine by the program of setting, has haved the function that the exhaust air rate for controlling wind turbine.

Description

Lifting blade heated type three-cylinder drier
Technical field
The utility model is related to a kind of three-cylinder drier, especially a kind of lifting blade heated type three-cylinder drier.
Background technology
In the processings fields such as present grain, food, chemical industry, medicine, agricultural and sideline product, herbage, need to carry out material Heat drying processing;The hot wind that roller drying machine uses be by equipment outside heat exchanger heat exchange hot wind or three it is dry It needs to install heating cabinet additional outside dry storehouse, heating tank is heated to the warehouse heat conduction of three dryness storehouses, and thermal energy just may be used by secondary heat exchange To use, the heat exchange efficiency of thermal energy is low, and the use of thermal energy is disposable, and the availability of thermal energy is low, baking needed thermal energy It is increased by very much.The rotating speed of three dryness storehouses is constant, can not adjust three dryness storehouses according to the dry condition of material Rotating speed.
The exhaust apparatus of three-cylinder drier is all constant revolution currently on the market, can not to the air of different humidity It is discharged according to the air that different humidity is arranged;The loss of thermal energy is caused to waste.
Lifting blade in three dryness storehouses of three drum driers stirs just for the sake of increasing to push away into the uniform hot wind of material There are good contact, lifting blade itself there is no the function that heat conduction is heated.
For three dryness storehouses in rotary course, the feed inlet of three dryness storehouses will produce displacement up and down, be connected to Feeding equipment on three dryness storehouses can also shake as the feed inlet of three dryness storehouses is synchronous together, the shaking of three dryness storehouses Being fixedly connected for Influence of Displacement feeding equipment and three dryness storehouses, causes the connection of the feed inlet of feeding equipment and three dryness storehouses Damage leaks and gas leakage.
Utility model content
Problem to be solved in the utility model is to overcome the shortcomings of the prior art, provides a kind of lifting blade heated type Three-cylinder drier.
In order to achieve the above object, the utility model is achieved through the following technical solutions:A kind of lifting blade heated type three Cylinder drier includes three dryness storehouses, feeding equipment, exhaust apparatus, support roller, holder, driving device, gear ring, raceway, lifting Heating apparatus, online moisture tester, drive set controller.
The lifting heating apparatus is mounted in three dryness storehouses.
The feeding equipment is mounted on the feed inlet of three dryness storehouses, exhaust apparatus be mounted on three dryness storehouses into Expect on the exhaust pipe on device.
The outer diameter of three dryness storehouses is 2800-4500mm;The length of three dryness storehouses 1 is 5800- 12000mm。
There is gear ring on three dryness storehouses, it is integrated that gear ring and three dryness storehouses, which are fixedly connected,.
There is raceway on three dryness storehouses;It is integrated that raceway and three dryness storehouses, which are fixedly connected,.
The support roller supporting bracket the raceway on three dryness storehouses.
The driving device is motor or hydraulic motor.
In order to improve driving device effect, gearbox can be mixed and applied together;Driving device can also be motor and change Fast case or hydraulic motor and gearbox.
The driving wheel occlusion of the driving device drives the gear teeth for fixing the gear ring on three dryness storehouses, gear ring Drive three dryness storehouses.
Under driving device induced effect, three dryness storehouses are support by support roller and are revolved on support roller three dryness storehouses Transhipment is dynamic.
The online moisture tester is mounted on the cylinder in three dryness storehouses, and drive set controller, which is mounted on, to be driven On dynamic device.
The drive set controller refers to being controlled the driving device according to resistance value in predetermined order change circuit The main of speed governing enables device, or refer to according to predetermined order change circuit in resistance value come the control of the speed governing controlled the driving device System.
The online moisture tester is 1-5.
The online moisture tester is played the role of being the outer barrel for testing three dryness storehouses, in inner cylinder and middle cylinder Material moisture in the material of different location.
The online moisture tester, which will collect moisture signal and be converted into electronic signal, delivers into driving device control In device processed, drive set controller regulates and controls the rotating speed of driving device by the program of setting.
The driving device sets different rotating speeds by the program of setting to drive according to drive set controller The rotation of three dryness storehouses.
Material moisture when the dry in-bin drying of described three is high, and the rotating speed of three dryness storehouses more slowly, increases material Drying time;Material moisture when dry is low, and the rotating speed of three dryness storehouses is quicker, improves the velocity of discharge of material, reduces The drying time of material.
The rotation of driving device three dryness storehouses of control increases the drying efficiency of material.
The face shaping of three dryness storehouses is cylindric.
There are discharge port and feed inlet on three dryness storehouses.
The discharge port of three dryness storehouses is also the discharge port of outer barrel, and the feed inlet of three dryness storehouses is also inner cylinder Feed inlet.
One end of three dryness storehouses is taper, and the other end is plane;There is discharging in one end of three dryness storehouse tapers Mouthful, there is feed inlet in one end of plane.
The lifting heating apparatus includes plate-type heat-pipe, heat conducting pipe.
The heat conducting pipe is the pipe that metal makes,.
The heat conducting pipe is straight-line arrangement, or is arranged in the shape of a spiral.
In the shape of a spiral by the processing modelling of bending machine, the heat conducting pipe of helical arrangement can reduce the heat conducting pipe The stress of heat conducting pipe caused by thermal expansion difference, to suitably enhance the anti-performance expanded with heat and contract with cold of heat conducting pipe.
The diameter of the heat conducting pipe is 35-68mm, and the length of heat conducting pipe is 2000-28000mm.
The heat conducting pipe has thermal energy import and thermal energy outlet.
The thickness of the plate-type heat-pipe is 20-50mm, and the height of plate-type heat-pipe is 300-500mm, plate-type heat-pipe Length is 200-600mm.
The plate-type heat-pipe includes hollow metal plate, heat-conducting work medium.
The heat-conducting work medium is in hollow metal plate.
The bottom end of the plate-type heat-pipe is concave shape;The concave shape bottom end of plate-type heat-pipe is fitted on the pipe of heat conducting pipe The bottom end in face, plate-type heat-pipe is fixed by welding on the pipe face of heat conducting pipe, and the bottom end of plate-type heat-pipe and heat conducting pipe are fixed as one Body.
The adjacent spacing between plate-type heat-pipe and plate-type heat-pipe on the heat conducting pipe is 50-120mm.
The thermal energy that heat-conducting medium in the heat conducting pipe pipe carries is by heat transfer to the concave shape bottom end of plate-type heat-pipe Carry out heat conduction heating.
What the heat conduction heat exchange of the heat-conducting work medium in the plate-type heat-pipe utilized is heat pipe for thermal conductivity technology, and thermal energy is by leading " liquid-gas phase transition " of hot working fluid carrys out heat conduction heat exchange.
The plate-type heat-pipe is a gravity assisted heat pipe;The bottom end of plate-type heat-pipe is the evaporator section of heat-conducting work medium, board-like heat The side plate of the side of the hollow metal plate of pipe is the condensation segment of heat-conducting work medium.
Fixation is respectively welded by metal strip in the top of the plate-type heat-pipe, between plate-type heat-pipe and adjacent plate-type heat-pipe Support is fixedly connected with by metal strip.
Three dryness storehouses support fixed plate-type heat-pipe to increase the bottom of plate-type heat-pipe in rotary course, by metal strip The connection solidness at end and heat conducting pipe, the bottom end for reducing plate-type heat-pipe is detached from the hidden danger of heat conducting pipe, carries under the effect of external force The high service life of plate-type heat-pipe.
The plate-type heat-pipe is an individual integral solder in the outside of heat conducting pipe, the inside of plate-type heat-pipe and heat conduction The inside of pipe is not communicated with;Leakage is generated when damage occurs in a certain piece of plate-type heat-pipe, does not influence lifting heating apparatus and three The safe handling of cylinder dryness storehouse.
The lifting heating apparatus is mounted in three dryness storehouses, and the heat conducting pipe of lifting heating apparatus is fixed on three On the cylinder of cylinder dryness storehouse.
Three dryness storehouses include inner cylinder, outer barrel, middle cylinder, middle cylinder baffle, outer barrel baffle, helical blade.
The discharge port of the outer barrel is also the discharge port of three dryness storehouses, and the feed inlet of inner cylinder is also three dryness storehouses Feed inlet.
The thermal energy import of the heat conducting pipe of lifting heating apparatus in the outer barrel is prolonged from the centre of the discharge port of outer barrel Stretching is gone;The thermal energy outlet of the heat conducting pipe of lifting heating apparatus in inner cylinder is extended out from the centre of the feed inlet of inner cylinder.
The lifting heating apparatus spirally arranged can give material heat conduction to heat, and can also play dry in material The effect push ahead material when dry work, stirred;Material also obtains in the propulsion whipping process of lifting heating apparatus Uniform stirring is arrived, the drying uniform moisture degree of material is also improved.
Three dryness storehouses include inner cylinder, outer barrel, middle cylinder, middle cylinder baffle, outer barrel baffle, helical blade.
The making material of the inner cylinder of three dryness storehouses, outer barrel, middle cylinder, middle cylinder baffle, outer barrel baffle is 2-12mm Metallic plate.
The helical blade is fixed on inner cylinder, outer barrel, on the cylinder in middle cylinder.
Processing and fabricating is good outside for the lifting heating apparatus, then will be including lifting heating apparatus integral installation Cylinder, outer barrel, the inside of middle cylinder, such lifting heating apparatus make simply, and handling ease reduces the difficulty of processing of worker, Improve the processing and manufacturing speed of three dryness storehouses.The lifting heating apparatus processed is also allowed for mounted on inner cylinder, outer barrel, in In cylinder.
The helical blade and lifting heating apparatus is separately fixed at inner cylinder, outer barrel, after middle cylinder;By inner cylinder in middle cylinder Inside, middle cylinder is in the outside of outer barrel;The concentric outer barrel of three different-diameters, middle cylinder, inner cylinder is according to certain mathematical relationship And structure type, each other phase build-in be composed surely.
The heat conducting pipe of the lifting heating apparatus is in the inner cylinder of three dryness storehouses, outer barrel, has been sequentially connected in series in middle cylinder Come.
The thermal energy import of the heat conducting pipe of lifting heating apparatus in the outer barrel extends the discharge port of source outer barrel, outside In the heat conducting pipe of the outer barrel thermal energy outlet of the heat conducting pipe of lifting heating apparatus in cylinder and the lifting heating apparatus of middle cylinder Cylinder thermal energy import fixation is connected together.The outlet of middle cylinder thermal energy and the inner cylinder of the heat conducting pipe of lifting heating apparatus in middle cylinder The inner cylinder thermal energy import fixation of the heat conducting pipe of lifting heating apparatus is connected together.
Lifting heating apparatus in the inner cylinder of three dryness storehouses is 1-5 groups or 10-35 rows;Raising in outer barrel Flitch heating device is 1-5 groups or 10-35 rows;Lifting heating apparatus in middle cylinder is 1-5 groups or 10-35 rows.
The inner cylinder of three dryness storehouses, outer barrel, the interior installation of middle cylinder is lifting of 10-65 rows in straight-line arrangement Heating apparatus;The lifting heating apparatus that either 1-5 groups arrange in the shape of a spiral.
The inner cylinder of three dryness storehouses, outer barrel, multiple rows of or multigroup the multiple of lifting heating apparatus lead in middle cylinder The thermal energy import of heat pipe is combined into a thermal energy import, the heating of multiple rows of or multigroup lifting blade by 1-10 manifolding concentrations The thermal energy outlet of multiple heat conducting pipes of device is combined into a thermal energy outlet by 1-10 manifolding concentrations, is situated between convenient for heat conduction The disengaging of matter is multiple rows of or multigroup lifting heating apparatus.
After the heating devices heat that heat-conducting medium passes through peripheral hardware, the heat-conducting medium of thermal energy is carried by the discharging of three dryness storehouses The heat conducting pipe of lifting heating apparatus at mouthful enters inside the lifting heating apparatus of three dryness storehouses, and heat-conducting medium leads to successively Cross the inner cylinder of three dryness storehouses, outer barrel, the lifting heating apparatus of middle cylinder, heat-conducting medium after heat dissipation by three dryness storehouses into The lifting heating apparatus of three dryness storehouses is discharged in the heat conducting pipe of lifting heating apparatus at material mouth.
The inside of the outer barrel of three dryness storehouses, middle cylinder, inner cylinder is intercommunication.
Outer barrel cylinder at the outer barrel feed inlet of the outer barrel by outer barrel baffle and the feed inlet of inner cylinder internal barrel Body sealing is fixed together.
The middle cylinder cylinder of the middle cylinder discharge outlet of the middle cylinder is fixed together by middle cylinder baffle, the surrounding of middle cylinder baffle It is fixed together with the middle cylinder cylinder at the middle cylinder feed inlet of middle cylinder.
The feeding equipment includes wind stopping device, bellows elbow, bump joint, sealing device, exhaust pipe, dynamic sealing dress It sets.
The dynamic sealing device is fixed on bellows elbow.
The air inlet of the exhaust pipe is fixed on bellows elbow, and exhaust pipe and bellows elbow are fixedly connected as one Body;In three dryness storehouse rotary courses, the connection of exhaust pipe and elbow is that fixing seal is air-locked.
The exhaust apparatus is mounted on the exhaust outlet of exhaust pipe.
It is to ventilate inside the pipe of the exhaust pipe and inside bellows elbow, gas when dry materials in three dryness storehouses Change the moisture generated to be gone out by exhaust apparatus pump drainage by exhaust pipe.
The bump joint of the feeding equipment is fixedly connected on the feed inlet of three dryness storehouses, bump joint and three It is connected to one on the feed inlet of dryness storehouse.
The elbow of the bellows elbow is exported to be connected by sealing device come dynamic sealing between bump joint;Close wind Device is supported by holder and is fixed;The lower end of wind stopping device is fixedly connected in the elbow import of bellows elbow.
When three dryness storehouses rotate under the driving effect of driving device, bump joint is with three dryness storehouses Feed inlet synchronous rotary together;Bellows elbow and exhaust pipe are fixed, the elbow outlet of bellows elbow and flange By the dynamic sealing of sealing device between connector, gas leakage is not generated;Consolidated by bellows elbow between wind stopping device and bump joint It is fixed to be tightly connected.
The sealing device is dynamic sealing device or device for sealing magnetic fluid.
The bellows elbow is made of metal bellows.
For the bellows elbow as elastic packing part, the connection between wind stopping device and bump joint is curved by bellows Head fixing seal.
Under the turning effort of three dryness storehouses, when bump joint is with three dryness storehouse synchronous rotaries, three dryness storehouses Inlet port and outlet port will produce the displacement up and down such as axial displacement, angular displacement and lateral displacement;Bellows elbow In succession bump joint one end bellows with three dryness storehouses inlet port and outlet port displacement and synchronous shift together, The in succession bellows of one end of wind stopping device of bellows elbow is fixed.
One end that the bellows elbow is connected to bump joint allows the working position generated under rated load effect It moving, bellows elbow has ensured the fixed seal connection between wind stopping device and bump joint in three dryness storehouse rotary courses, It avoids three displacement vibrations between dryness storehouse and wind stopping device to cause to leak, gas is avoided to enter in three dryness storehouses.
The exhaust apparatus includes casing, wind turbine, supporting rack, hygronom, controller of fan.
The motor of the wind turbine is variable-frequency motor variable speed electric motors, particularly or alternating current generator.
The hygronom and controller of fan is mounted on casing.
The controller of fan refers to controlling the wind turbine of exhaust apparatus according to resistance value in predetermined order change circuit The main of speed governing of motor enable device;Or refer to controlling the wind of exhaust apparatus according to resistance value in predetermined order change circuit The control system of the speed governing of machine.
The assembling is in the shell of casing;Wind turbine is fixed on by supporting rack on casing.
The hygronom is exactly the instrument for measuring moisture content in air.
The hygronom is 1-5;Spare 1-2 hygronoms have ensured safe handling, are broken there are one hygronom, The spare data acquisition for not influencing hygronom.
The hygronom is mounted on the air inlet of casing, or at the air outlet of casing.
The hygronom is played the role of being the air humidity in the wind turbine pump drainage air event of test exhaust apparatus; Hygronom, which will collect humidity value signal and be converted into electronic signal, to be delivered into controller of fan, and controller of fan passes through setting Program regulate and control the rotating speed of the motor of wind turbine, haved the function that the exhaust air rate for controlling wind turbine.
After wind turbine powers on startup, motor drives the fan blade rotation exhaust on motor shaft.
For lifting blade heated type roller drying machine during dry materials, the wind turbine of exhaust apparatus is logical according to controller of fan The program of setting is crossed to regulate and control the rotating speed of the motor of wind turbine;Wetness in air during the wind turbine pump drainage of exhaust apparatus Humidity value is high, and the rotating speed of wind turbine is quicker, increases the moisture exhaust air rate in three dryness storehouses, has the function that quick hydrofuge;Row The humidity value of wetness is low in air during the wind turbine pump drainage of device of air, and the rotating speed of wind turbine more slowly, reduces three and does Air exhaust air rate in dry storehouse, reduces the loss of thermal energy.
The discharge port of three dryness storehouses, heat conducting pipe are extended in the thermal energy import of the heat conducting pipe of the lifting heating apparatus Thermal energy import be connected on the heating device of peripheral hardware by thermal energy conduit, the heat-conducting medium after the heating devices heat of peripheral hardware is logical Cross the inside that thermal energy import of the thermal energy conduit through heat conducting pipe enters lifting heating apparatus.
The thermal energy outlet of the heat conducting pipe of the lifting heating apparatus extend at the feed inlets of three dryness storehouses into Expect the bellows elbow of device;The thermal energy outlet of the heat conducting pipe of lifting heating apparatus is connected to adding for peripheral hardware by thermal energy conduit In thermal;Heat-conducting medium after heat dissipation is heated again by the heating device of peripheral hardware, and the heat-conducting medium after heating passes through thermal energy Thermal energy import of the conduit through heat conducting pipe enters the inside of lifting heating apparatus.
Extend the heat conducting pipe of bellows elbow and the junction of bellows elbow by dynamic sealing device dynamic sealing, leads While heat pipe rotates, bellows elbow is fixed, and the junction of heat conducting pipe and bellows elbow is sealed air-tight 's.
The junction of the heat conducting pipe and bellows elbow, come dynamic sealing, can be existed by dynamic sealing device to avoid air The junction of heat conducting pipe and bellows elbow is leaked into three dryness storehouses.
The workflow of heat conduction, the heat exchange of the lifting heating apparatus is as follows.
One, after the heating devices heat that heat-conducting medium passes through peripheral hardware, the heat-conducting medium that carry thermal energy passes through heat conducting pipe Thermal energy import enters in heat conducting pipe, and the heat-conducting medium after heat dissipation passes through thermal energy by the thermal energy outlet discharge heat conducting pipe of heat conducting pipe The heating device that conduit is again introduced into peripheral hardware heats again, and what heat-conducting medium recycled always carries out in heating device and heat conducting pipe Heating, heat conduction, heat exchange.
Two, it when lifting heating apparatus and three dryness storehouses rotate simultaneously, when the bottom end of plate-type heat-pipe is downward, releases The gasiform heat-conducting work medium of thermal energy is condensed into wooden partition stream of the liquid heat-conducting work medium along the hollow metal plate of plate-type heat-pipe To the bottom end of plate-type heat-pipe, after the heat-conducting work medium in plate-type heat-pipe flows to bottom end, what the heat-conducting medium in heat conducting pipe pipe carried Bottom end of tube wall of the thermal energy through heat conducting pipe by heat transfer to plate-type heat-pipe carries out heat conduction heating;Thermal energy in heat conducting pipe passes through plate The spill bottom end of formula heat pipe provides thermal energy to the liquid heat-conducting work medium in plate-type heat-pipe.Plate-type heat-pipe bottom end it is liquid Heat-conducting work medium is by the energy heats of heat-conducting medium in heat conducting pipe and the heat-conducting work medium of phase-changeable gas shape, heat-conducting work medium so follow Reciprocal " liquid gas phase transition " heat conduction heat exchange of ring.
Three, gas after the heat conduction heating that the liquid heat-conducting work medium of bottom end passes through the thermal energy on heat conducting pipe in plate-type heat-pipe Change, the heat-conducting work medium after gasification moves in the inner cavity of plate-type heat-pipe, and the heat-conducting work medium after gasification passes through the hollow of plate-type heat-pipe After the outside heat conduction and heat radiation of metallic plate, the heat-conducting work medium after gasification is condensed into liquid heat-conducting work medium, condensed liquid Heat gasifies again after heat-conducting work medium flows to the bottom end of plate-type heat-pipe, the liquid gas phase that the heat conduction heat exchange of thermal energy passes through heat-conducting work medium Become and carry out heat conduction heat exchange, heat-conducting work medium carries out the heat conduction heat exchange of liquid-gas phase transition in the hollow metal intralamellar part of plate-type heat-pipe.Heat pipe On thermal energy by heat transfer, heat radiation to around heat pipe material heat conduction heat.
Four, the thermal energy in lifting heating apparatus by the heat transfer of heat conducting pipe and plate-type heat-pipe, heat radiation to lifting blade Material thermal conductivity around heating device heats, and the material in three dryness storehouses has obtained thermal energy and carried out dry drying, reaches institute Need to ask the material of water content standard.
The thermal energy that the heating device of peripheral hardware generates directly passes through the heat conduction of the lifting heating apparatus in three dryness storehouses Pipe and plate-type heat-pipe carry out heat conduction heating to material;Thermal energy in lifting heating apparatus is raised by heat transfer, heat radiation Material around flitch heating device carries out heat conduction heating.
Heat conduction is carried out since the thermal energy that heating device generates is directly entered in the lifting heating apparatus in three dryness storehouses Heat exchange, three dryness storehouses outsides need not install heating cabinet additional, and the structure of heating tank, three dryness storehouses is simple, low manufacture cost, dries The utilization rate in dry place is further improved.
Thermal energy in the heat conducting pipe pipe of lifting heating apparatus in three dryness storehouses entrained by heat-conducting medium is logical The concave shape bottom end that overheat is conducted to plate-type heat-pipe carries out heat conduction heating;Thermal energy on bottom end is to the liquid heat conduction in heat pipe Working medium provides thermal energy, and thermal energy does not need secondary heat conduction heat exchange, improves the thermal energy availability of thermal energy.
The energy consumption index of the conductive drying of lifting blade heated type three-cylinder drier is 2800-4000kj/kg, and to draining off Dry is 4000-7500kj/kg;The thermal energy availability of convective drying generally only 20-50%, and conductive drying is in theory On can be close to 100%, the actually thermal energy availability in lifting blade heated type three-cylinder drier can reach 60-80%. Conductive drying is more energy saving by 30-50% than convective drying under normal circumstances, this is because the conduction of lifting blade heated type three-cylinder drier Drying does not need Hot-blast Heating material, small by the thermal losses for being vented lost.
The workflow of the drying of the material of lifting blade heated type three-cylinder drier is as follows:
One, wind stopping device is started, material passes through the wind stopping device of feeding equipment, bellows elbow, the feed inlet of three dryness storehouses Into in three dryness storehouses.
Two, after the heating devices heat that heat-conducting medium passes through peripheral hardware, the heat-conducting medium that carry thermal energy passes through heat conducting pipe Thermal energy import enters the inside of the heat conducting pipe of the lifting heating apparatus of three dryness storehouses, and thermal energy is directly heated by lifting blade and filled It sets to the material heat conduction heating around lifting heating apparatus.
Three, three dryness storehouses rotate under the induced effect of driving device, and online moisture tester will collect moisture letter Number being converted into electronic signal delivers into drive set controller, and drive set controller regulates and controls to drive by the program of setting The rotating speed of dynamic device, driving device set different rotating speeds by the program of setting to drive three according to drive set controller The rotation of cylinder dryness storehouse.
Four, it while lifting heating apparatus is heated to material heat conduction, can also play object when dry materials work Expect the effect pushed ahead, stirred.Material in three dryness storehouses has obtained the heating of thermal energy, and material carries out dry drying Afterwards, reach the material of necessary requirement water content standard.
Five, the moisture that gasification generates when dry materials in three dryness storehouses is gone out by exhaust pipe by exhaust apparatus pump drainage. Hygronom, which will collect humidity value signal and be converted into electronic signal, to be delivered into controller of fan, and controller of fan passes through setting Program regulate and control the rotating speed of the motor of wind turbine 48, haved the function that the exhaust air rate for controlling wind turbine.
Six, material is in the effect of helical blade pushed ahead after drying, and material passes sequentially through three dryness storehouses after drying Discharge port be discharged three dryness storehouses.
The utility model has the advantages that compared with existing three-cylinder drier:A kind of three bakings of lifting blade heated type The thermal energy that the heat-conducting medium of dry machine carries is transmitted to by lifting heating apparatus on the material around lifting heating apparatus, is carried High the heat conduction heating speed of thermal energy, bellows elbow have ensured the wind stopping device and bump joint in three dryness storehouse rotary courses Between fixed seal connection.Driving device according to drive set controller set by the program of setting different rotating speeds come Drive the rotation of three dryness storehouses;Controller of fan regulates and controls the rotating speed of the motor of wind turbine by the program of setting, has reached control The effect of the exhaust air rate of wind turbine processed.Leakage is generated when damage occurs in a certain piece of plate-type heat-pipe, does not influence entire three dryness storehouses It uses, reduces the failure rate of lifting blade heated type three-cylinder drier, improve the use of lifting blade heated type three-cylinder drier The time limit.
Description of the drawings:
Fig. 1, for the structural schematic diagram of the utility model lifting blade heated type three-cylinder drier;
Fig. 2, for the utility model lifting blade heated type three-cylinder drier three dryness storehouses structural schematic diagram;
Fig. 3, for the utility model lifting blade heated type three-cylinder drier three dryness storehouses outer barrel structural schematic diagram;
Fig. 4, for the utility model lifting blade heated type three-cylinder drier three dryness storehouses middle cylinder structural schematic diagram;
Fig. 5, for the utility model lifting blade heated type three-cylinder drier three dryness storehouses inner cylinder structural schematic diagram;
Fig. 6, for the utility model lifting blade heated type three-cylinder drier lifting heating apparatus structural schematic diagram;
Fig. 7, for the utility model lifting blade heated type three-cylinder drier lifting heating apparatus cross section structure Schematic diagram;
Fig. 8, for the utility model lifting blade heated type three-cylinder drier feeding equipment structural schematic diagram;
Fig. 9, for the utility model lifting blade heated type three-cylinder drier exhaust apparatus structural schematic diagram.
In attached drawing figure:1, three dryness storehouses, 2, exhaust apparatus, 3, feeding equipment, 4, lifting heating apparatus, 5, discharging Mouthful, 6, feed inlet, 7, support roller, 8, raceway, 9, driving device, 10, thermal energy import, 11, thermal energy outlet, 12, gear ring, 13, branch Frame, 14, heat conducting pipe, 15, exhaust pipe, 16, flow direction of material mark, 17, outer barrel, 18, helical blade, 19, middle cylinder, 20, outer barrel into Material mouth, 21, the outlet of outer barrel thermal energy, 22, middle cylinder baffle, 23, outer barrel baffle, 24, inner cylinder, 25, the outlet of middle cylinder thermal energy, 26, middle cylinder Thermal energy import, 27, middle cylinder feed inlet, 28, middle cylinder discharge port, 29, inner cylinder discharge port, 30, inner cylinder thermal energy import, 31, heat conduction is situated between Matter, 32, hollow metal plate, 33, bottom end, 34, heat-conducting work medium, 35, plate-type heat-pipe, 36, top, 37, metal strip, 38, bellows Elbow, 39, wind stopping device, the outlet of 40 elbows, 41, dynamic sealing device, 42, elbow import, 43, sealing device, 44, bump joint, 45, air inlet, 46, hygronom, 47, casing, 48, fan blade, 49, motor shaft, 50, air outlet, 51, wind turbine, 52, supporting rack.
Specific implementation mode:
The utility model is described further with reference to the accompanying drawings and examples.
Embodiment:
Lifting blade heated type three-cylinder drier as shown in Figure 1 include three dryness storehouses 1, feeding equipment 3, exhaust apparatus 2, Support roller 7, holder 13, driving device 9, gear ring 12, raceway 8, lifting heating apparatus 4, online moisture tester, driving device Controller.
The lifting heating apparatus 4 is mounted in three dryness storehouses 1.
The feeding equipment 3 is mounted on the feed inlet 6 of three dryness storehouses 1, and exhaust apparatus 2 installs feeding equipment 3 On exhaust pipe 15.
The outer diameter of three dryness storehouses 1 is 2800mm;The length of three dryness storehouses 11 is 8000mm.
There is gear ring 12 on three dryness storehouses 1, it is integrated that gear ring 12 is fixedly connected with three dryness storehouses 1.
There is raceway 8 on three dryness storehouses 1;It is integrated that raceway 8 is fixedly connected with three dryness storehouses 1.
7 supporting bracket of support roller the raceway 8 on three dryness storehouses 1.
The driving device 9 is motor.
The driving wheel occlusion of the motor of the driving device 9, which drives, fixes the gear ring on three dryness storehouses 1 12 The gear teeth, gear ring 12 drive three dryness storehouses 1.
Under 9 induced effect of driving device, three dryness storehouses 1 are support by support roller 7 in support roller three dryness storehouses 1 Rotary motion on 7.
The online moisture tester is mounted on the cylinder in three dryness storehouses 1, and drive set controller is mounted on In driving device 9.
The online moisture tester is 3.
The online moisture tester is played the role of being the outer barrel 17 for testing three dryness storehouses 1, and inner cylinder 24 is in Material moisture in the material of different location in cylinder 19.
The online moisture tester, which will collect moisture signal and be converted into electronic signal, delivers into driving device control In device processed, drive set controller regulates and controls the rotating speed of driving device 9 by the program of setting.
The driving device 9 sets different rotating speeds by the program of setting to drive according to drive set controller The rotation of three dryness storehouses 1.
The rotation of three dryness storehouses 1 of control of driving device 9 increases the drying efficiency of material.
The face shaping of three dryness storehouses 1 is cylindric.
There are discharge port 5 and feed inlet 6 on three dryness storehouses 1.
The discharge port 5 of three dryness storehouses 1 is also the discharge port 5 of outer barrel 17, the feed inlet 6 of three dryness storehouses 1 It is inner cylinder feed inlet 29.
One end of three dryness storehouses 1 is taper, and the other end is plane;One end of three 1 tapers of dryness storehouse have into There is discharge port 5 in one end of material mouth 6, plane.
Such as Fig. 1, Fig. 6, lifting heating apparatus 4 shown in Fig. 7 includes plate-type heat-pipe 35, heat conducting pipe 14.
The heat conducting pipe 14 is the pipe that metal makes,.
The heat conducting pipe 14 is straight-line arrangement.
The diameter of the heat conducting pipe 14 is 48mm, and the length of heat conducting pipe 14 is 12000mm.
The heat conducting pipe 14 has thermal energy import 10 and thermal energy outlet 11.
The thickness of the plate-type heat-pipe 35 is 50mm, and the height of plate-type heat-pipe 35 is 400mm, the length of plate-type heat-pipe 35 It is 300mm.
The plate-type heat-pipe 35 includes hollow metal plate 32, heat-conducting work medium 34.
The heat-conducting work medium 34 is in hollow metal plate 32.
The bottom end 33 of the plate-type heat-pipe 35 is concave shape;The concave shape bottom end 33 of plate-type heat-pipe 35 is fitted in heat conduction Above, the bottom end 33 of plate-type heat-pipe 35 is fixed by welding on the pipe face of heat conducting pipe 14 pipe of pipe 14;The bottom of plate-type heat-pipe 35 End 33 and heat conducting pipe 14 are fixed as one.
The adjacent spacing between plate-type heat-pipe 35 and plate-type heat-pipe 35 on the heat conducting pipe 14 is 80mm.
The thermal energy that heat-conducting medium 31 in 14 pipe of heat conducting pipe carries is by heat transfer to the spill of plate-type heat-pipe 35 Shape bottom end 33 carries out heat conduction heating.
What the heat conduction heat exchange of the heat-conducting work medium 34 in the plate-type heat-pipe 35 utilized is heat pipe for thermal conductivity technology, and thermal energy is logical " liquid-gas phase transition " for crossing heat-conducting work medium 34 carrys out heat conduction heat exchange.
The plate-type heat-pipe 35 is a gravity assisted heat pipe;The bottom end 33 of plate-type heat-pipe 35 is the evaporation of heat-conducting work medium 34 Section, the side plate of the side of the hollow metal plate 32 of plate-type heat-pipe 35 is the condensation segment of heat-conducting work medium 34.
Fixation is respectively welded by metal strip 37 in the top 36 of the plate-type heat-pipe 35, plate-type heat-pipe 35 with it is adjacent board-like Support is fixedly connected with by metal strip 37 between heat pipe 35.
Three dryness storehouses 1 support fixed plate-type heat-pipe 35 to increase board-like heat in rotary course, by metal strip 37 The bottom end 33 of pipe 35 and the connection solidness of heat conducting pipe 14.
The plate-type heat-pipe 35 is an individual integral solder in the outside of heat conducting pipe 14, the inside of plate-type heat-pipe 35 It is not communicated with the inside of heat conducting pipe 14;Leakage is generated when damage occurs in a certain piece of plate-type heat-pipe 35, lifting blade is not influenced and adds The safe handling of thermal 4 and three dryness storehouses 1.
The lifting heating apparatus 4 is mounted in three dryness storehouses 1, and the heat conducting pipe 14 of lifting heating apparatus 4 is solid It is scheduled on the cylinder of three dryness storehouses 1.
Such as Fig. 1, Fig. 2, Fig. 3, Fig. 4, three dryness storehouses 1 shown in fig. 5 include inner cylinder 24, outer barrel 17, middle cylinder 19, middle cylinder gear Plate 22, outer barrel baffle 23, helical blade 18.
Three dryness storehouses 1 include inner cylinder 24, outer barrel 17, middle cylinder 19, middle cylinder baffle 22, outer barrel baffle 23, spiral Blade 18.
The inner cylinder 24 of three dryness storehouses 1, outer barrel 17, middle cylinder 19, middle cylinder baffle 22, the making material of outer barrel baffle 23 Material is 5mm metallic plates.
The helical blade 18 is fixed on inner cylinder 24, outer barrel 17, on the cylinder in middle cylinder 19.
Processing and fabricating is good outside for the lifting heating apparatus 4, then 4 integral installation of lifting heating apparatus is existed Inner cylinder 24, outer barrel 17, the inside of middle cylinder 19, such lifting heating apparatus 4 make simply, and handling ease reduces worker's Difficulty of processing improves the processing and manufacturing speed of three dryness storehouses 1.The lifting heating apparatus 4 processed also allows for being mounted on Inner cylinder 24, outer barrel 17, in middle cylinder 19.
The helical blade 18 and lifting heating apparatus 4 is separately fixed at inner cylinder 24, outer barrel 17, after middle cylinder 19;It will Inner cylinder 24 is in the inside of middle cylinder 19, and middle cylinder 19 is in the outside of outer barrel 17;The concentric outer barrel 17 of three different-diameters, middle cylinder 19, Inner cylinder 24 is composed surely according to certain mathematical relationship and structure type, each other phase build-in.
The heat conducting pipe 14 of the lifting heating apparatus 4 is in the inner cylinder 24 of three dryness storehouses 1, outer barrel 17, in middle cylinder 19 It is sequentially connected in series.
The thermal energy import 10 of the heat conducting pipe 14 of lifting heating apparatus 4 in the outer barrel 17 extends source outer barrel 17 Discharge port 5, the outer barrel thermal energy outlet 21 of the heat conducting pipe 14 of the lifting heating apparatus 4 in outer barrel 17 and the lifting blade of middle cylinder 19 add Middle cylinder thermal energy import 26 fixation of the heat conducting pipe 14 of thermal 4 is connected together.Lifting heating apparatus 4 in middle cylinder 19 is led The inner cylinder thermal energy import 30 of the heat conducting pipe 14 of the middle cylinder thermal energy outlet 25 of heat pipe 14 and the lifting heating apparatus 4 of inner cylinder 24 is fixed It is connected together.
Lifting heating apparatus 4 in the inner cylinder 24 of three dryness storehouses 1 is 20 rows;Lifting blade in outer barrel 17 adds Thermal 4 is 20 rows;Lifting heating apparatus 4 in middle cylinder 19 is 20 rows.
The inner cylinder 24 of three dryness storehouses 1, outer barrel 17, the interior installation of middle cylinder 19 is 20 rows raising in straight-line arrangement Flitch heating device 4.
The inner cylinder 24 of three dryness storehouses 1, outer barrel 17,20 of the lifting heating apparatus 4 of 20 rows in middle cylinder 19 The thermal energy import 10 of heat conducting pipe 14 is combined into a thermal energy import, the lifting heating apparatus 4 of 20 rows by 4 manifolding concentrations The thermal energy outlets 11 of 20 heat conducting pipes 14 a thermal energy outlet is combined by 4 manifoldings concentration, be convenient for heat-conducting medium 31 The row's lifting of disengaging 20 heating apparatus 4.
After the heating devices heat that heat-conducting medium 31 passes through peripheral hardware, the heat-conducting medium 31 of thermal energy is carried by three dryness storehouses 1 Discharge port 5 at lifting heating apparatus 4 heat conducting pipe 14 enter three dryness storehouses 1 lifting heating apparatus 4 inside, lead Thermal medium 31 passes sequentially through the inner cylinder 24 of three dryness storehouses 1, outer barrel 17, the lifting heating apparatus 4 of middle cylinder 19, leading after heat dissipation Three dryness storehouses 1 are discharged by the heat conducting pipe 14 of the lifting heating apparatus 4 of the feed inlet 6 of three dryness storehouses 1 in thermal medium 31 Lifting heating apparatus 4.
The inside of the outer barrel 17 of three dryness storehouses 1, middle cylinder 19, inner cylinder 24 is intercommunication.
Outer barrel cylinder at the outer barrel feed inlet 20 of the outer barrel 17 is by outer barrel baffle 23 and inner cylinder feed inlet 29 The sealing of inner cylinder cylinder is fixed together.
Middle cylinder cylinder at the middle cylinder discharge port 28 of the middle cylinder 19 is fixed together by middle cylinder baffle 22, middle cylinder baffle Middle cylinder cylinder at the middle cylinder feed inlet 27 of 22 surrounding and middle cylinder 19 is fixed together.
Such as Fig. 1, feeding equipment 3 shown in Fig. 8 includes wind stopping device 39, bellows elbow 38, bump joint 44, sealing device 43, exhaust pipe 15, dynamic sealing device 41.
The bellows elbow 38 is made of metal bellows.
One end that the bellows elbow 38 is connected to bump joint 44 allows the work generated under rated load effect Make displacement, bellows elbow 38 has ensured the wind stopping device 39 in three 1 rotary courses of dryness storehouse and consolidating between bump joint 44 It is fixed to be tightly connected.
The dynamic sealing device 41 is fixed on bellows elbow 38.
The air inlet of the exhaust pipe 15 is fixed on bellows elbow 38, and exhaust pipe 15 and bellows elbow 38 are fixed It is connected as one;In three 1 rotary courses of dryness storehouse, the connection of exhaust pipe 15 and elbow is that fixing seal is air-locked.
The exhaust apparatus 2 is mounted on the exhaust outlet of exhaust pipe 15.
Inside the pipe of the exhaust pipe 15 and 38 the inside of bellows elbow is to ventilate, and material is dry in three dryness storehouses 1 The moisture that gasification generates when dry is gone out by exhaust pipe 15 by 2 pump drainage of exhaust apparatus.
The bump joint 44 of the feeding equipment 3 is fixedly connected on the feed inlet 6 of three dryness storehouses 1, bump joint 44 and three dryness storehouses 1 feed inlet 6 on be connected to one.
By sealing device 43 come dynamic sealing between the elbow outlet 40 of the bellows elbow 38 and bump joint 44 Connection;Wind stopping device 39 is supported by holder 13 and is fixed;The lower end of wind stopping device 39 is fixedly connected with the elbow import 42 of bellows elbow 38 On.
When three dryness storehouses 1 rotate under the driving effect of driving device 9, bump joint 44 is with three dryings The feed inlet 6 in storehouse 1 synchronous rotary together;Bellows elbow 38 and exhaust pipe 15 be it is fixed, bellows elbow 38 it is curved By the dynamic sealing of sealing device 43 between head outlet 40 and bump joint 44, gas leakage is not generated;Wind stopping device 39 and flange connect By 38 fixed seal connection of bellows elbow between first 44.
The sealing device 43 is device for sealing magnetic fluid.
Such as Fig. 1, exhaust apparatus 2 shown in Fig. 9 includes casing 47, wind turbine 51, supporting rack 52, hygronom 46, air-blower control Device.
The hygronom 46 and controller of fan are mounted on casing 47.
The wind turbine 51 is mounted in the shell of casing 47;Wind turbine 51 is fixed on by supporting rack 52 on casing 47.
The hygronom 46 is 2.
The hygronom 46 is mounted at the air inlet 45 of casing 47.
The hygronom 46, which will collect humidity value signal and be converted into electronic signal, to be delivered into controller of fan, wind Machine controller regulates and controls the rotating speed of the motor of wind turbine 51 by the program of setting, has reached the work of the exhaust air rate of control wind turbine 51 With.
After wind turbine 51 powers on startup, motor drives the fan blade rotation exhaust on motor shaft.
For lifting blade heated type roller drying machine during dry materials, the wind turbine 51 of exhaust apparatus 2 is according to air-blower control Device regulates and controls the rotating speed of the motor of wind turbine 51 by the program of setting;In air during 51 pump drainage of wind turbine of exhaust apparatus 2 The humidity value of wetness is high, and the rotating speed of wind turbine 51 is quicker, increases the moisture exhaust air rate in three dryness storehouses 1, reaches quick The effect of hydrofuge;The humidity value of wetness is low in air during 51 pump drainage of wind turbine of exhaust apparatus 2, and wind turbine 51 turns It is fast slow, the air exhaust air rate in three dryness storehouses 1 is reduced, the loss of thermal energy is reduced.
Such as Fig. 1, Fig. 2, the thermal energy import 10 of the heat conducting pipe 14 of lifting heating apparatus 4 shown in Fig. 8 is extended three and is done The thermal energy import 10 of the discharge port 5 in dry storehouse 1, heat conducting pipe 14 is connected to by thermal energy conduit on the heating device of peripheral hardware.
Heat-conducting medium 31 after the heating devices heat of peripheral hardware by thermal energy import 10 of the thermal energy conduit through heat conducting pipe 14 into Enter the inside of lifting heating apparatus 4.
Extend the feed inlet 6 of three dryness storehouses 1 in the thermal energy outlet 11 of the heat conducting pipe 14 of the lifting heating apparatus 4 The bellows elbow 38 of the feeding equipment 3 at place;The thermal energy outlet 11 of the heat conducting pipe 14 of lifting heating apparatus 4 passes through thermal energy conduit It is connected on the heating device of peripheral hardware;Heat-conducting medium 31 after heat dissipation is heated again by the heating device of peripheral hardware, after heating Heat-conducting medium 31 enters the inside of lifting heating apparatus 4 by thermal energy import 10 of the thermal energy conduit through heat conducting pipe 14.
Extend the heat conducting pipe 14 of bellows elbow 38 and the junction of bellows elbow 38 by 41 dynamic of dynamic sealing device Sealing, while heat conducting pipe 14 rotates, bellows elbow 38 is fixed, the company of heat conducting pipe 14 and bellows elbow 38 The place of connecing is sealed air-tight.
Thermal energy directly the leading by the lifting heating apparatus 4 in three dryness storehouses 1 that the heating device of peripheral hardware generates Heat pipe 14 and plate-type heat-pipe 35 carry out heat conduction heating to material.
It is led in the lifting heating apparatus 4 being directly entered in three dryness storehouses 1 due to the thermal energy that heating device generates Heat heat exchange, three 1 outsides of dryness storehouse need not install heating cabinet additional, and the structure of heating tank, three dryness storehouses 1 is simple, cost of manufacture Low, the utilization rate for drying place is further improved.
The heat conducting pipe 14 of lifting heating apparatus 4 in three dryness storehouses 1 is managed entrained by interior heat-conducting medium 31 Concave shape bottom end 33 of the thermal energy by heat transfer to plate-type heat-pipe 35 carries out heat conduction heating;Thermal energy on bottom end 33 is in heat pipe Liquid heat-conducting work medium 34 provides thermal energy, and thermal energy does not need secondary heat conduction heat exchange, and the thermal energy for improving thermal energy effectively uses Rate.
The energy consumption index of the conductive drying of lifting blade heated type three-cylinder drier is 2800-4000kj/kg, and to draining off Dry is 4000-7500kj/kg;The thermal energy availability of convective drying generally only 20-50%, and conductive drying is in theory On can be close to 100%, the actually thermal energy availability in lifting blade heated type three-cylinder drier can reach 60-80%. Conductive drying is more energy saving by 30-50% than convective drying under normal circumstances, this is because the conduction of lifting blade heated type three-cylinder drier Drying does not need Hot-blast Heating material, small by the thermal losses for being vented lost.
The workflow of the drying of the material of lifting blade heated type three-cylinder drier is as follows:
One, wind stopping device 39 is started, material passes through the wind stopping device 39 of feeding equipment 3, bellows elbow 38, three dryness storehouses 1 Feed inlet 6 enter in three dryness storehouses 1.
Two, after the heating devices heat that heat-conducting medium 31 passes through peripheral hardware, the heat-conducting medium 31 that carry thermal energy passes through heat conduction The thermal energy import 10 of pipe 14 enters the inside of the heat conducting pipe 14 of the lifting heating apparatus 4 of three dryness storehouses 1, and thermal energy directly passes through Lifting heating apparatus 4 is to the material heat conduction heating around lifting heating apparatus 4.
Three, three dryness storehouses 1 rotate under the induced effect of driving device 9, and online moisture tester will collect moisture Signal is converted into electronic signal and delivers into drive set controller, and drive set controller is regulated and controled by the program of setting The rotating speed of driving device 9, driving device 9 set different rotating speeds by the program of setting to drive according to drive set controller Move the rotation of three dryness storehouses 1.
Four, it while lifting heating apparatus 4 is heated to material heat conduction, can also play object when dry materials work Expect the effect pushed ahead, stirred.Material in three dryness storehouses 1 has obtained the heating of thermal energy, and material carries out dry drying Afterwards, reach the material of necessary requirement water content standard.
Five, the moisture that gasification generates when dry materials in three dryness storehouses 1 is pumped out by exhaust pipe 15 by exhaust apparatus 2 It goes.Hygronom 46, which will collect humidity value signal and be converted into electronic signal, to be delivered into controller of fan, and controller of fan is logical The program of setting is crossed to regulate and control the rotating speed of the motor of wind turbine 51, has haved the function that the exhaust air rate for controlling wind turbine 51.
Six, material is in the effect of helical blade 18 pushed ahead after drying, and material passes sequentially through three dryings after drying Three dryness storehouses 1 are discharged in the discharge port 5 in storehouse 1.
Above example is merely used to help understand the production method and its core concept of the utility model, and specific implementation is not It is confined to above-mentioned specific embodiment, those skilled in the art is from above-mentioned design, without performing creative labour, institute The variation made, all falls within the scope of protection of the utility model.

Claims (5)

1. a kind of lifting blade heated type three-cylinder drier, including three dryness storehouses(1), feeding equipment(3), exhaust apparatus(2), support Wheel(7), holder(13), driving device(9), gear ring(12), raceway(8), lifting heating apparatus(4), online moisture measurement Instrument, drive set controller;It is characterized in that:Lifting heating apparatus(4)Mounted on three dryness storehouses(1)It is interior, feeding equipment(3) Mounted on three dryness storehouses(1)Feed inlet(6)On, exhaust apparatus(2)Feeding equipment is installed(3)Exhaust pipe(15)On;
Three dryness storehouses(1)On have gear ring(12), have raceway on dryness storehouse 1(8);Three dryness storehouses(1)It is driving Device(9)Under induced effect, three dryness storehouses(1)By support roller(7)It supports in support roller(7)Upper rotary motion;
The online moisture tester is mounted on three dryness storehouses(1)On interior cylinder, drive set controller, which is mounted on, to be driven Dynamic device(9)On;
The lifting heating apparatus(4)Including plate-type heat-pipe(35), heat conducting pipe(14);
The heat conducting pipe(14)It is straight-line arrangement, or arranges in the shape of a spiral;Heat conducting pipe(14)There is thermal energy import(10) It is exported with thermal energy(11);
The plate-type heat-pipe(35)Including hollow metal plate(32), heat-conducting work medium(34);Heat-conducting work medium(34)In hollow metal Plate(32)It is interior;
The plate-type heat-pipe(35)Concave shape bottom end(33)It is fitted in heat conducting pipe(14)Pipe above, plate-type heat-pipe(35)'s Bottom end(33)And heat conducting pipe(14)It is fixed as one, plate-type heat-pipe(35)With adjacent plate-type heat-pipe(35)Between by metal strip 37 It is fixedly connected with support;
The plate-type heat-pipe(35)It is a gravity assisted heat pipe, heat conducting pipe(14)Heat-conducting medium in pipe(31)The thermal energy of carrying is logical Overheat is conducted to plate-type heat-pipe(35)Concave shape bottom end(33)Carry out heat conduction heating;Plate-type heat-pipe(35)Bottom end(33)It is to lead Hot working fluid(34)Evaporator section, plate-type heat-pipe(35)Hollow metal plate(32)The side plate of side be heat-conducting work medium(34)It is cold Solidifying section;
Three dryness storehouses(1)Including inner cylinder(24), outer barrel(17), middle cylinder(19), middle cylinder baffle(22), outer barrel baffle (23), helical blade(18);
The lifting heating apparatus(4)Integral installation is in inner cylinder(24), outer barrel(17), middle cylinder(19)Inside, lifting blade Heating device(4)Heat conducting pipe(14)In three dryness storehouses(1)Inner cylinder(24), outer barrel(17), middle cylinder(19)In be sequentially connected in series Get up;Three dryness storehouses(1)Inner cylinder(24), outer barrel(17), middle cylinder(19)Interior multiple rows of or multigroup lifting heating apparatus(4) Multiple heat conducting pipes(14)Thermal energy import(10)It is combined into a thermal energy import, Duo Paihuo by 1-10 manifolding concentrations Multigroup lifting heating apparatus(4)Multiple heat conducting pipes(14)Thermal energy outlet(11)It is concentrated by 1-10 manifoldings It is combined into a thermal energy outlet;
The outer barrel(17)Outer barrel feed inlet(20)The outer barrel cylinder at place is by outer barrel baffle(23)With inner cylinder feed inlet(29) The inner cylinder cylinder sealing at place is fixed together;Middle cylinder(19)Middle cylinder discharge port(28)The middle cylinder cylinder at place is by middle cylinder baffle(22) It is fixed together, middle cylinder baffle(22)Surrounding and middle cylinder(19)Middle cylinder feed inlet(27)The middle cylinder cylinder at place is fixedly connected on Together;
The feeding equipment(3)Including wind stopping device(39), bellows elbow(38), bump joint(44), sealing device(43), Exhaust pipe(15), dynamic sealing device(41);Dynamic sealing device(41)It is fixed on bellows elbow(38)On;Exhaust pipe(15)Into Gas port is fixed on bellows elbow(38)On;Bellows elbow(38)Elbow outlet(40)And bump joint(44)Between by close Seal apparatus(43)Come dynamic sealing connection, wind stopping device(39)And bump joint(44)Between by bellows elbow(38)Fixing seal Connection;Wind stopping device(39)By holder(13)Support is fixed;
The feeding equipment(3)Bump joint(44)It is fixedly connected on three dryness storehouses(1)Feed inlet(6)On, flange Connector(44)With three dryness storehouses(1)Feed inlet(6)Synchronous rotary together;Bellows elbow(38)And exhaust pipe(15)It is It is fixed;
The bellows elbow(38)It is to be made of metal bellows, bellows elbow(38)It is connected to bump joint(44) One end rated load effect under allow generate work shift;
The exhaust apparatus(2)Mounted on exhaust pipe(15)Exhaust outlet on;
The exhaust apparatus(2)Including casing(47), wind turbine(51), supporting rack(52), hygronom(46), controller of fan; Hygronom(46)It is mounted on casing with controller of fan(47)On;Wind turbine(51)Pass through supporting rack(52)It is fixed on casing(47) On;
The lifting heating apparatus(4)Heat conducting pipe(14)Thermal energy import(10)Extend three dryness storehouses(1)Go out Material mouth 5, lifting heating apparatus(4)Heat conducting pipe(14)Thermal energy outlet(11)Extend three dryness storehouses(1)Feed inlet (6)The feeding equipment at place(3)Bellows elbow(38), extend bellows elbow(38)Heat conducting pipe(14)It is curved with bellows Head(38)Junction by dynamic sealing device(41)Dynamic sealing;
The workflow of the drying of the material of lifting blade heated type three-cylinder drier is as follows:
One, wind stopping device is started(39), material passes through feeding equipment(3)Wind stopping device(39), bellows elbow(38), three dryings Storehouse(1)Feed inlet(6)Into three dryness storehouses(1)It is interior;
Two, carry the heat-conducting medium of thermal energy(31)Pass through heat conducting pipe(14)Thermal energy import(10)Into three dryness storehouses(1) Lifting heating apparatus(4)Heat conducting pipe(14)Inside, thermal energy directly passes through lifting heating apparatus(4)To lifting blade plus Thermal(4)The material heat conduction heating of surrounding;
Three, three dryness storehouses(1)In driving device(9)Induced effect under rotate, online moisture tester will collect moisture Signal is converted into electronic signal and delivers into drive set controller, driving device(9)Passed through according to drive set controller The program of setting drives three dryness storehouses to set different rotating speeds(1)Rotation;
Four, three dryness storehouses(1)The moisture that gasification generates when interior dry materials passes through exhaust pipe(15)By exhaust apparatus(2)Pump drainage It goes out;Hygronom(46)It humidity value signal will be collected is converted into electronic signal and deliver into controller of fan, air-blower control Device regulates and controls wind turbine by the program of setting(51)Motor rotating speed;
Five, material is in helical blade after drying(18)The effect pushed ahead, material passes sequentially through three dryness storehouses(1)Go out Three dryness storehouses are discharged in material mouth 5(1).
2. a kind of lifting blade heated type three-cylinder drier according to claim 1, it is characterised in that:Three dryness storehouses(1) Outer diameter be 2800-4500mm;Three dryness storehouses(1)1 length is 5800-12000mm.
3. a kind of lifting blade heated type three-cylinder drier according to claim 1, it is characterised in that:Online moisture tester It is 1-5.
4. a kind of lifting blade heated type three-cylinder drier according to claim 1, it is characterised in that:Three dryness storehouses(1) Inner cylinder(24), outer barrel(17), middle cylinder(19)Interior installation is lifting heating apparatus of 10-65 rows in straight-line arrangement (4);The lifting heating apparatus that either 1-5 groups arrange in the shape of a spiral(4).
5. a kind of lifting blade heated type three-cylinder drier according to claim 1, it is characterised in that:Sealing device(43)It is Dynamic sealing device or device for sealing magnetic fluid.
CN201820554941.3U 2018-04-18 2018-04-18 Lifting blade heated type three-cylinder drier Expired - Fee Related CN208075532U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201820554941.3U CN208075532U (en) 2018-04-18 2018-04-18 Lifting blade heated type three-cylinder drier

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201820554941.3U CN208075532U (en) 2018-04-18 2018-04-18 Lifting blade heated type three-cylinder drier

Publications (1)

Publication Number Publication Date
CN208075532U true CN208075532U (en) 2018-11-09

Family

ID=64040184

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201820554941.3U Expired - Fee Related CN208075532U (en) 2018-04-18 2018-04-18 Lifting blade heated type three-cylinder drier

Country Status (1)

Country Link
CN (1) CN208075532U (en)

Similar Documents

Publication Publication Date Title
CN208075532U (en) Lifting blade heated type three-cylinder drier
CN110388812A (en) Lifting blade heated type three-cylinder drier
CN110388798A (en) Three vacuum dryers of lifting blade heated type
CN110388796A (en) Internal heating type three-cylinder drier
CN208223056U (en) Internal heating type three-cylinder drier
CN208223057U (en) Three vacuum dryers of lifting blade heated type
CN216080881U (en) Forced drainage high-efficiency heating dryer
CN208075516U (en) Heat pipe-type roller drying machine
CN208124724U (en) Three vacuum dryers of internal heating type
CN208254133U (en) Lifting blade heated type roller drying machine
CN208332868U (en) Internal heating type rotary-drum vacuum dryer
CN110345732A (en) Internal heating type roller drying machine
CN110375522A (en) Lifting blade heated type rotary-drum vacuum dryer
JP3066471U (en) Vacuum stirring and drying equipment for municipal solid waste disposal
CN208254132U (en) Heat the board-like roller drying machine of lifting
CN208254075U (en) Lifting blade heated type rotary-drum vacuum dryer
CN110345749A (en) Heat the board-like rotary-drum vacuum dryer of lifting
CN207147122U (en) Hot pipe conducting formula dryer
CN208333023U (en) Heat pipe-type rotary-drum vacuum dryer
CN110375523A (en) Three vacuum dryers of internal heating type
CN110375533A (en) Heat pipe-type roller drying machine
CN208333022U (en) Heat the board-like rotary-drum vacuum dryer of lifting
CN110375529A (en) Lifting blade heated type roller drying machine
CN206724624U (en) Conductive drying formula vacuum dryer
CN110345733A (en) Heat the board-like roller drying machine of lifting

Legal Events

Date Code Title Description
GR01 Patent grant
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20181109

Termination date: 20210418

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