CN107843080A - A kind of material drying device and its method of work of Intelligent adjustment drying mode - Google Patents
A kind of material drying device and its method of work of Intelligent adjustment drying mode Download PDFInfo
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- CN107843080A CN107843080A CN201711085670.8A CN201711085670A CN107843080A CN 107843080 A CN107843080 A CN 107843080A CN 201711085670 A CN201711085670 A CN 201711085670A CN 107843080 A CN107843080 A CN 107843080A
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- Prior art keywords
- processor
- drive device
- displacement
- processed
- outer barrel
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Classifications
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F26—DRYING
- F26B—DRYING SOLID MATERIALS OR OBJECTS BY REMOVING LIQUID THEREFROM
- F26B11/00—Machines or apparatus for drying solid materials or objects with movement which is non-progressive
- F26B11/02—Machines or apparatus for drying solid materials or objects with movement which is non-progressive in moving drums or other mainly-closed receptacles
- F26B11/08—Machines or apparatus for drying solid materials or objects with movement which is non-progressive in moving drums or other mainly-closed receptacles rotating about a vertical or steeply-inclined axis
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F26—DRYING
- F26B—DRYING SOLID MATERIALS OR OBJECTS BY REMOVING LIQUID THEREFROM
- F26B21/00—Arrangements or duct systems, e.g. in combination with pallet boxes, for supplying and controlling air or gases for drying solid materials or objects
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F26—DRYING
- F26B—DRYING SOLID MATERIALS OR OBJECTS BY REMOVING LIQUID THEREFROM
- F26B25/00—Details of general application not covered by group F26B21/00 or F26B23/00
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F26—DRYING
- F26B—DRYING SOLID MATERIALS OR OBJECTS BY REMOVING LIQUID THEREFROM
- F26B25/00—Details of general application not covered by group F26B21/00 or F26B23/00
- F26B25/22—Controlling the drying process in dependence on liquid content of solid materials or objects
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F26—DRYING
- F26B—DRYING SOLID MATERIALS OR OBJECTS BY REMOVING LIQUID THEREFROM
- F26B5/00—Drying solid materials or objects by processes not involving the application of heat
- F26B5/16—Drying solid materials or objects by processes not involving the application of heat by contact with sorbent bodies, e.g. absorbent mould; by admixture with sorbent materials
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- Engineering & Computer Science (AREA)
- Mechanical Engineering (AREA)
- General Engineering & Computer Science (AREA)
- Health & Medical Sciences (AREA)
- Life Sciences & Earth Sciences (AREA)
- Molecular Biology (AREA)
- Drying Of Solid Materials (AREA)
Abstract
The invention discloses a kind of material drying device of Intelligent adjustment drying mode,Including charging aperture,Conveyer belt,Hothouse,Discharging opening,Control room,First pipeline and second pipe,Control room includes processor,Drive device and displacement adjustment device,Drive device is connected with processor,Displacement adjustment device is connected with processor,For adjusting the displacement of electronic sliding block,Charging aperture and the first pipeline communication,Dry second pipe connects with discharging opening,First pipeline includes conveyer belt,Humidity sensor,Camera and baseboard,Humidity sensor is used for the humidity value for detecting material to be processed,Camera is used to shoot the picture in the first pipeline,Baseboard is used for the size of contrast conting material to be processed,Hothouse includes line slideway,Electronic sliding block,Outer barrel,Inner cylinder and spiral rotating device,Electronic sliding block drives inner cylinder to be moved up and down in outer barrel,Outer barrel and inner cylinder include some openings being uniformly arranged,The opening of inner cylinder and the opening offset of outer barrel arrange.
Description
Technical field
The present invention relates to dry materials field, and in particular to a kind of material drying device of Intelligent adjustment drying mode and its
Method of work.
Background technology
The drying of solid particle fuel and classification are preconditioning techniques important in derived energy chemical industry.Dry in simple terms
Can be solid because the form of various materials is different exactly needing the unnecessary moisture removal contained by dry material to fall
Body, liquid, solid can divide big block, fiber material, particulate material, fine powder material etc. again, thus the shape of moisture contained in material and
Amount is again different.For different materials, it is necessary to take different drying modes, including mechanical force is directly separated evaporation, heating
Evaporation drying method and hygroscopic desiccation method, when the situation of the attached water on drying objects surface, at this moment situation, three of the above method is all
It is inapplicable, preferably using air-dried seasoning.
When at present to dry materials, all simply material is poured into drying it is dried, dried after terminating again from going out
Material mouth is discharged, and drying mode is simple, often causes the drying of material not thorough.
The content of the invention
Goal of the invention:To solve problem present in background technology, the embodiments of the invention provide a kind of Intelligent adjustment to do
The material drying device and its method of work of dry mode.
Technical scheme:A kind of material drying device of Intelligent adjustment drying mode, including charging aperture, conveyer belt, hothouse,
Discharging opening and control room, in addition to the first pipeline and second pipe, the control room include processor, drive device and
Displacement adjustment device, the drive device are connected with the processor, and the displacement adjustment device is connected with the processor, are used
In the displacement for adjusting the electronic sliding block, the charging aperture and first pipeline communication, described in the hothouse connection
First pipeline and the second pipe, the second pipe connect with the discharging opening, the internal diameter of first pipeline with it is described
The internal diameter of second pipe is identical, and first pipeline includes a horizontal component and a vertical portion, and the conveyer belt is built in
The horizontal component, it is connected with the drive device, for transporting material to be processed, first pipeline also includes humidity sensor
Device, camera and baseboard, the humidity sensor are located above the conveyer belt, are connected with the processor, for examining
To survey the humidity value of the material to be processed and send it to the processor, the camera is located above the conveyer belt,
It is connected with the processor, for shooting the picture in first pipeline and sending it to the processor, the size
Plate is between the conveyer belt and the camera, for the size of material to be processed described in contrast conting, the hothouse
Including line slideway, electronic sliding block corresponding with the line slideway, outer barrel, inner cylinder and the spiral rotating dress being arranged symmetrically
Put, the electronic sliding block is connected with the drive device, and the line slideway is connected with the outer tube inner wall, the electronic sliding block
Be connected with the inner tank theca, the electronic sliding block drives the inner cylinder to be moved up and down in the outer barrel, the outer barrel with
And the inner cylinder includes some openings being uniformly arranged, the opening of the inner cylinder arranges with the opening offset of the outer barrel, described
Spiral rotating device is connected with the outer barrel and the hothouse, is driven by the drive device.
As a kind of preferred embodiment of the present invention, the drying equipment also includes industrial fan, the industrial fan and institute
Drive device connection is stated, for air-drying the moisture of the surface of material to be processed.
As a kind of preferred embodiment of the present invention, the transparent shape of baseboard, include the grids of some pre-set dimensions, institute
Pre-set dimension is stated to be stored in the processor.
As a kind of preferred embodiment of the present invention, second conduit includes heating plate, the heating plate and the driving
Device connects, for carrying out redrying to material.
As a kind of preferred embodiment of the present invention, the inner cylinder includes drier, when the inner cylinder and the outer barrel occur
After relative displacement, the drier contacts with the material in the hothouse.
As a kind of preferred embodiment of the present invention, including following job step:
A) processor exports conveying signal to the drive device, and the drive device drives the conveying tape starting;
B) material to be processed is launched into the charging aperture, the material to be processed enters with the conveyer belt into the hothouse
Row drying process;
C) camera shoots the picture of the material to be processed through the baseboard and sends it to the processor;
D) material is compared with the grid according to the picture for the processor, calculates the material to be processed
Size;
E) displacement adjustment device determines the displacement of the electronic sliding block according to the size and sends it to the place
Manage device;
F) processor moves institute to the drive device output mobile signal, the drive device driving electronic sliding block
State displacement;
G) processor exports rotating signal to the drive device, and the drive device drives the spiral rotating device to open
It is dynamic.
As a kind of preferred embodiment of the present invention, also include after step b:
The humidity sensor detects the humidity value of the material to be processed and sends it to the processor;
The processor judges whether the humidity value is more than or equal to default humidity value;
If so, the processor exports to the drive device air-dries signal, the drive device drives the industrial fan to open
It is dynamic.
As a kind of preferred embodiment of the present invention, step d also includes:
The processor compares the size of the material to be processed in the picture one by one, chooses wherein minimum size, and will
The minimum size is sent to the displacement adjustment device.
As a kind of preferred embodiment of the present invention, the displacement adjustment device often receives a size, reset
Displacement, and the displacement is sent to the processor, the displacement is less than the size.
As a kind of preferred embodiment of the present invention, also include after step g:
The processor exports heating signal to the drive device, and the drive device drives the heating plate to start.
The present invention realizes following beneficial effect:
A variety of dry modes can be combined by material drying device provided by the invention, while be taken not for different materials
Same drying mode;Suitable for volume is less, the less material of weight;Drier is placed in inner cylinder, inner cylinder is provided with outer barrel
The opening of Heterogeneous Permutation, when electronic sliding block moves, the opening of the outer barrel produces overlapping region, institute with the opening of the inner cylinder
State the region that overlapping region i.e. material contacts with drier;The opening offset of the outer barrel and the inner cylinder can be in the material
Ensure the sealing of the inner cylinder when drying equipment does not work, that is, ensure the drying property of the drier;Humidity sensor is used for
The humidity value of material is detected, when the humidity value exceedes default humidity value, using air-dried drying mode.
Brief description of the drawings
Accompanying drawing herein is merged in specification and forms the part of this specification, shows the implementation for meeting the disclosure
Example, and be used in specification to explain the principle of the disclosure together.Fig. 1 is a kind of Intelligent adjustment drying mode provided by the invention
Material drying device structural representation;
Fig. 2 is drying chamber structure schematic diagram provided by the invention;
Fig. 3 is drying chamber structure schematic diagram when inner cylinder provided by the invention produces relative displacement with outer barrel;
Fig. 4 is a kind of material drying device flow chart of work methods of Intelligent adjustment drying mode provided by the invention;
Fig. 5 is air-dry method flow chart provided by the invention;
Fig. 6 is that displacement provided by the invention determines method flow diagram.
Embodiment
Below in conjunction with the accompanying drawing in the embodiment of the present invention, the technical scheme in the embodiment of the present invention is carried out clear, complete
Site preparation describes, it is clear that described embodiment is only part of the embodiment of the present invention, rather than whole embodiments.
Embodiment one
As shown in Figure 1, 2, a kind of material drying device of Intelligent adjustment drying mode, including charging aperture 1, conveyer belt 2, hothouse
3rd, discharging opening 4 and control room 5, in addition to the first pipeline 6 and second pipe 7, the control room 5 include processor 8, driving
Device 9 and displacement adjustment device 10, the drive device 9 are connected with the processor 8, the displacement adjustment device 10 and institute
State processor 8 to connect, for adjusting the displacement of the electronic sliding block 15, the charging aperture 1 connects with first pipeline 6
Logical, the hothouse 3 connects first pipeline 6 and the second pipe 7, and the second pipe 7 connects with the discharging opening 4
Logical, the internal diameter of first pipeline 6 is identical with the internal diameter of the second pipe 7, first pipeline 6 including a horizontal component with
And a vertical portion, the conveyer belt 2 is built in the horizontal component, is connected with the drive device 9, to be processed for transporting
Material, first pipeline 6 also include humidity sensor 11, camera 12 and baseboard 13, the humidity sensor 11
Above the conveyer belt 2, it is connected with the processor 8, for detecting the humidity value of the material to be processed and being sent to
To the processor 8, the camera 12 is connected, described in shooting positioned at the top of conveyer belt 2 with the processor 8
Picture in first pipeline 6 simultaneously sends it to the processor 8, and the baseboard 13 is located at the conveyer belt 2 and taken the photograph with described
Between first 12, for the size of material to be processed described in contrast conting, the hothouse 3 includes the line slideway being arranged symmetrically
14th, corresponding with the line slideway 14 electronic sliding block 15, outer barrel 16, inner cylinder 17 and spiral rotating device 18, it is described electronic
Sliding block 15 is connected with the drive device 9, and the line slideway 14 is connected with the inwall of outer barrel 16, the electronic sliding block 15 with
The outer wall of inner cylinder 17 connection, the electronic sliding block 15 drives the inner cylinder 17 to be moved up and down inside the outer barrel 16, described
Outer barrel 16 and the inner cylinder 17 include some openings being uniformly arranged, the opening and the opening of the outer barrel 16 of the inner cylinder 17
Heterogeneous Permutation, the spiral rotating device 18 are connected with the outer barrel 16 and the hothouse 3, are driven by the drive device 9
It is dynamic.
The drying equipment also includes industrial fan 19, and the industrial fan 19 is connected with the drive device 9, for wind
Do the moisture of the surface of material to be processed.
The 13 transparent shape of baseboard, includes the grid of some pre-set dimensions, and the pre-set dimension is stored in the place
Manage in device 8.
Second conduit includes heating plate 20, and the heating plate 20 is connected with the drive device 9, for entering to material
Row redrying.
The inner cylinder 17 includes drier 21, described dry after the inner cylinder 17 and the outer barrel 16 generation relative displacement
Drying prescription 21 contacts with the material in the hothouse 3.
Specifically, material drying device provided by the invention includes charging aperture 1, conveyer belt 2, hothouse 3, discharging opening 4, control
Room 5, the first pipeline 6, second pipe 7 and industrial fan 19 processed, wherein, the control room 5 includes processor 8, drive device 9
And displacement adjustment device 10, the displacement adjustment device 10 include displacement transducer, first pipeline 6 includes humidity sensor
Device 11, camera 12 and baseboard 13, the second pipe 7 include heating plate 20, and the hothouse 3 includes line slideway
14th, electronic sliding block 15, outer barrel 16, inner cylinder 17 and spiral rotating device 18, the inner cylinder 17 include drier 21, the drying
Agent 21 is packed by mesh bag.
When opening the material drying device, the processor 8 exports conveying signal, the drive to the drive device 9
Dynamic device 9 drives the conveyer belt 2 to start, and is also wrapped before the processor 8 exports conveying signal to the drive device 9
Include, the conveyer belt 2 is built-in with gravity sensor, and the gravity sensor is connected with the processor 8, to be processed for detecting
Material is to the pressure of the conveyer belt and sends it to the processor 8, when the material to be processed is launched to enter described in
After material mouth 1, fall into the conveyer belt 2 of the lower section of the charging aperture 1 straight, the pressure that the processor 8 receives become greatly until more than etc.
When preset pressure, the processor 8 exports conveying signal to the drive device 9 again.After the conveyer belt 2 starts, institute
State material to be processed enter the camera 12 coverage, between the camera 12 and the material to be processed also every
There is a baseboard 13, the baseboard 13 is transparent and including some size identical grids, and the side is preset with the processor 8
The size of lattice, the width of the baseboard 13 are slightly wider than the width of the conveyer belt 2, and the camera 12 sends out the picture of shooting
Give the processor 8, due to the baseboard 13 be it is transparent, the processor 8 according to the material to be processed with it is described
The lap of baseboard 13 calculates the size of the material, and the processor 8 sends out the size being calculated after calculating
The displacement adjustment device 10 is given, the displacement adjustment device 10 determines the position of the electronic sliding block 15 according to size is received
Shifting amount, the displacement must be less than the size, if the displacement is more than or equal to the size, the material to be processed can
The inner cylinder 17 can be entered, according to actual conditions, the displacement may be provided with 80% or 70% or 60% of the size etc.,
Aforementioned proportion can be by user's sets itself.As shown in Fig. 2 the outer barrel 16 and the inner cylinder 17 offer some openings, institute
The opening and the opening offset of the inner cylinder 17 for stating outer barrel 16 arrange, and the dislocation is dislocation form up and down, during original state, i.e.,
Under misaligned state, the opening of the outer barrel 16 and the no overlapping region of opening of the inner cylinder 17;As shown in figure 3, when described
When electronic sliding block 15 moves, the opening and the opening of the inner cylinder 17 of the outer barrel 16 engender overlapping region, the coincidence
Region is the region that material contacts with drier 21, and dash area is overlapping region in figure.The processor 8 fills to the driving
9 output rotating signals are put, the drive device 9 drives the spiral rotating device 18 to start, and the material to be processed departs from institute
Enter the spiral rotating device 18 after stating conveyer belt 2, the spiral rotating device 18 drives material to be connect with the drier 21
Touch, the drier 21 absorbs the moisture of the material, and material is by entering the second pipe 7 after the hothouse 3.
The lower section of the second pipe 7 is provided with material-gathering device, and the material-gathering device is used for the material for collecting completion of processing,
The material-gathering device is detachable.
Embodiment two
As shown in figure 4, a kind of method of work of the material drying device of Intelligent adjustment drying mode, including following job step:
A) processor 8 exports conveying signal to the drive device 9, and the drive device 9 drives the conveyer belt 2 to open
It is dynamic;
B) material to be processed is launched and enters the hothouse with the conveyer belt 2 into the charging aperture 1, the material to be processed
3 are dried processing;
C) camera 12 shoots the picture of the material to be processed and sends it to the place through the baseboard 13
Manage device 8;
D) material is compared with the grid according to the picture for the processor 8, calculates the material to be processed
Size;
E) displacement adjustment device 10 determines the displacement of the electronic sliding block 15 according to the size and sends it to institute
State processor 8;
F) processor 8 drives the electronic sliding block 15 to the output mobile signal of drive device 9, the drive device 9
The mobile displacement;
G) processor 8 exports rotating signal to the drive device 9, and the drive device 9 drives the spiral rotating to fill
Put 18 startups.
Also include after step b:
The humidity sensor 11 detects the humidity value of the material to be processed and sends it to the processor 8;
The processor 8 judges whether the humidity value is more than or equal to default humidity value;
If so, the processor 8 exports to the drive device 9 air-dries signal, the drive device 9 drives the industrial fan
19 start.
Also include after step g:
The processor 8 exports heating signal to the drive device 9, and the drive device 9 drives the heating plate 20 to start.
Specifically, in the case of surface of material attached water, optimum drying mode is to air-dry seasoning, the conveyer belt 2
Top is provided with humidity sensor 11, and the position of the humidity sensor 11 and the baseboard 13 is staggered, i.e., described humidity passes
There is no baseboard 13 to separate between sensor 11 and the material to be processed, as shown in figure 5, the humidity sensor 11 can be accurate
Measure the humidity value in first pipeline 6 and send it to the processor 8, the processor 8 is according to the humidity value
Judge the humidity value of the material, default humidity value is provided with the processor 8, when the humidity that the processor 8 receives
Value is when being more than or equal to the default humidity value, and the processor 8 judges that surface of material carries water, and the processor 8 is to described
The output of drive device 9 air-dries signal, and the drive device 9 drives the industrial fan 19 to start, and the industrial fan 19 starts
When, the spiral rotating device 18 enters holding state, and the material acts on lower edge in the wind-force that the industrial fan 19 exports
The screw thread of the spiral rotating device 18 voluntarily slides, and can increase material and receive the air-dried time.
Only it is difficult to by the drier 21 dry materials are complete, therefore, the outer wall of second pipe 7 is provided with heating plate
20, the processor 8 exports heating signal to the drive device 9, and the drive device 9 drives the heating plate 20 to start,
When material passes through the second pipe 7, hot gas carries out redrying to it in the second pipe 7.
Embodiment three
As shown in fig. 6, step d also includes:
The processor 8 compares the size of the material to be processed in the picture one by one, chooses wherein minimum size, and will
The minimum size is sent to the displacement adjustment device 10.
The displacement adjustment device 10 often receives a size, resets displacement, and the displacement is sent out
The processor 8 is given, the displacement is less than the size.
Specifically, after material to be processed enters the coverage of camera 12, the camera 12 shoots described to be processed
The picture of material and the baseboard 13 simultaneously sends it to the processor 8, and the processor 8 is synchronous to be calculated in the picture
Material to be processed size, and the size is compared, chooses wherein minimum size, and by the minimum size
The displacement adjustment device 10 is sent to, the displacement adjustment device 10 sets displacement according to the minimum size, and will
The displacement is sent to the processor 8, and the displacement is the displacement of the electronic sliding block 15, wherein, the processor 8
Calculate the size of the material in the picture received in real time, and select minimum dimension, the processor 8 by the minimum dimension with
Minimum dimension in a upper picture is compared, if the minimum dimension is less than the minimum dimension in a upper picture, the processing
Device 8 will the minimum dimension be sent to the displacement adjustment device 10, the displacement adjustment device 10 resets displacement,
And the displacement is sent to the processor 8.
The above embodiments merely illustrate the technical concept and features of the present invention, and the purpose is to allow be familiar with the skill of the technical field
Art personnel can understand present disclosure and implement according to this, can not be limited the scope of the invention with this.All bases
Equivalent changes or modifications made by spirit of the invention, it should all be included within the scope of the present invention.
Claims (10)
1. a kind of material drying device of Intelligent adjustment drying mode, including charging aperture(1), conveyer belt(2), hothouse(3), go out
Material mouth(4)And control room(5), it is characterised in that also including the first pipeline(6)And second pipe(7), the control room
(5)Including processor(8), drive device(9)And displacement adjustment device(10), the drive device(9)With the processor
(8)Connection, the displacement adjustment device(10)With the processor(8)Connection, for adjusting the electronic sliding block(15)Shifting
Dynamic distance, the charging aperture(1)With first pipeline(6)Connection, the hothouse(3)Connect first pipeline(6)With
The second pipe(7), the second pipe(7)With the discharging opening(4)Connection, first pipeline(6)Internal diameter and institute
State second pipe(7)Internal diameter it is identical, first pipeline(6)Including a horizontal component and a vertical portion, the conveying
Band(2)The horizontal component is built in, with the drive device(9)Connection, for transporting material to be processed, first pipeline
(6)Also include humidity sensor(11), camera(12)And baseboard(13), the humidity sensor(11)Positioned at described defeated
Send band(2)Top, with the processor(8)Connection, for detecting the humidity value of the material to be processed and sending it to institute
State processor(8), the camera(12)Positioned at the conveyer belt(2)Top, with the processor(8)Connection, for shooting
First pipeline(6)Interior picture simultaneously sends it to the processor(8), the baseboard(13)Positioned at the conveyer belt
(2)With the camera(12)Between, for the size of material to be processed described in contrast conting, the hothouse(3)Including right
Claim the line slideway of arrangement(14)And the line slideway(14)Corresponding electronic sliding block(15), outer barrel(16), inner cylinder(17)With
And spiral rotating device(18), the electronic sliding block(15)With the drive device(9)Connection, the line slideway(14)With institute
State outer barrel(16)Inwall connects, the electronic sliding block(15)With the inner cylinder(17)Outer wall connects, the electronic sliding block(15)Band
Move the inner cylinder(17)In the outer barrel(16)Inside moves up and down, the outer barrel(16)And the inner cylinder(17)Including some
The opening being uniformly arranged, the inner cylinder(17)Opening and the outer barrel(16)Opening offset arrangement, spiral rotating dress
Put(18)With the outer barrel(16)And the hothouse(3)Connection, by the drive device(9)Driving.
A kind of 2. material drying device of Intelligent adjustment drying mode according to claim 1, it is characterised in that:It is described dry
Dry equipment also includes industrial fan(19), the industrial fan(19)With the drive device(9)Connection, for air-drying described treat
The moisture on processing materials surface.
A kind of 3. material drying device of Intelligent adjustment drying mode according to claim 1, it is characterised in that:The chi
Very little plate(13)Transparent shape, includes the grid of some pre-set dimensions, and the pre-set dimension is stored in the processor(8)In.
A kind of 4. material drying device of Intelligent adjustment drying mode according to claim 1, it is characterised in that:Described
Two conduits include heating plate(20), the heating plate(20)With the drive device(9)Connection, it is secondary dry for being carried out to material
It is dry.
A kind of 5. material drying device of Intelligent adjustment drying mode according to claim 1, it is characterised in that:In described
Cylinder(17)Including drier(21), when the inner cylinder(17)With the outer barrel(16)After generation relative displacement, the drier
(21)With the hothouse(3)Interior material contact.
A kind of 6. work side of the material drying device of Intelligent adjustment drying mode according to claim any one of 1-5
Method, it is characterised in that:Including following job step:
A) processor(8)To the drive device(9)Output conveying signal, the drive device(9)Drive the conveying
Band(2)Start;
B) material to be processed is launched into the charging aperture(1), the material to be processed is with the conveyer belt(2)Done into described
Dry room(3)Processing is dried;
C) camera(12)Through the baseboard(13)Shoot the picture of the material to be processed and send it to institute
State processor(8);
D) processor(8)The material is compared with the grid according to the picture, calculates the thing to be processed
The size of material;
E) displacement adjustment device(10)The electronic sliding block is determined according to the size(15)Displacement and be sent to
To the processor(8);
F) processor(8)To the drive device(9)Output mobile signal, the drive device(9)Drive described electronic
Sliding block(15)The mobile displacement;
G) processor(8)To the drive device(9)Export rotating signal, the drive device(9)Drive the spiral
Rotating device(18)Start.
7. a kind of method of work of the material drying device of Intelligent adjustment drying mode according to claim 6, its feature
It is:Also include after step b:
The humidity sensor(11)Detect the humidity value of the material to be processed and send it to the processor(8);
The processor(8)Judge whether the humidity value is more than or equal to default humidity value;
If so, the processor(8)To the drive device(9)Output air-dries signal, the drive device(9)Drive the work
Industry blower fan(19)Start.
8. a kind of method of work of the material drying device of Intelligent adjustment drying mode according to claim 6, its feature
It is:Step d also includes:
The processor(8)The size of material to be processed in the picture is compared one by one, chooses wherein minimum size, and
The minimum size is sent to the displacement adjustment device(10).
9. a kind of method of work of the material drying device of Intelligent adjustment drying mode according to claim 8, its feature
It is:The displacement adjustment device(10)A size is often received, resets displacement, and the displacement is sent
To the processor(8), the displacement is less than the size.
10. a kind of method of work of the material drying device of Intelligent adjustment drying mode according to claim 6, its feature
It is:Also include after step g:
The processor(8)To the drive device(9)Export heating signal, the drive device(9)Drive the heating plate
(20)Start.
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CN109140916A (en) * | 2018-07-18 | 2019-01-04 | 安徽省金海种业有限公司 | A kind of method of rapid draing rice paddy seed |
CN110440555A (en) * | 2019-08-09 | 2019-11-12 | 王顺来 | A kind of pressurisable peanut drying device |
CN114467513A (en) * | 2021-11-29 | 2022-05-13 | 农业农村部南京农业机械化研究所 | Castor cleaning test bed |
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WO2008083703A1 (en) * | 2006-12-28 | 2008-07-17 | Jochen Zingelmann | Method for drying solid and/or liquid waste materials |
CN101876502A (en) * | 2010-06-17 | 2010-11-03 | 黄山华兰科技有限公司 | Rubber drying equipment |
CN101900479A (en) * | 2010-07-22 | 2010-12-01 | 朱曲波 | Poultry excrement drying device |
CN205747823U (en) * | 2016-07-04 | 2016-11-30 | 傅晓琳 | A kind of back pole plate fast water elimination device |
CN206073634U (en) * | 2016-08-17 | 2017-04-05 | 绍兴飞越印花有限公司 | Automatic hot-air drying unit is used in a kind of printing and dyeing |
Cited By (4)
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CN109140916A (en) * | 2018-07-18 | 2019-01-04 | 安徽省金海种业有限公司 | A kind of method of rapid draing rice paddy seed |
CN110440555A (en) * | 2019-08-09 | 2019-11-12 | 王顺来 | A kind of pressurisable peanut drying device |
CN110440555B (en) * | 2019-08-09 | 2020-10-16 | 福建麦沃特信息科技有限公司 | Peanut drying device capable of being pressurized |
CN114467513A (en) * | 2021-11-29 | 2022-05-13 | 农业农村部南京农业机械化研究所 | Castor cleaning test bed |
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