CN110274445A - A kind of ceramic solar slab body stands room and its stands method - Google Patents
A kind of ceramic solar slab body stands room and its stands method Download PDFInfo
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- CN110274445A CN110274445A CN201910638169.2A CN201910638169A CN110274445A CN 110274445 A CN110274445 A CN 110274445A CN 201910638169 A CN201910638169 A CN 201910638169A CN 110274445 A CN110274445 A CN 110274445A
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- ceramic solar
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- 239000000919 ceramic Substances 0.000 title claims abstract description 29
- 238000000034 method Methods 0.000 title claims abstract description 12
- 239000003595 mist Substances 0.000 claims abstract description 21
- 238000012544 monitoring process Methods 0.000 claims abstract description 11
- 238000009826 distribution Methods 0.000 claims abstract description 7
- 239000000758 substrate Substances 0.000 claims abstract description 7
- 239000011490 mineral wool Substances 0.000 claims description 8
- 239000007921 spray Substances 0.000 claims description 6
- 238000009423 ventilation Methods 0.000 claims description 3
- 238000009413 insulation Methods 0.000 claims description 2
- 238000001035 drying Methods 0.000 abstract description 12
- 230000000694 effects Effects 0.000 abstract description 2
- 230000032683 aging Effects 0.000 description 3
- 235000015895 biscuits Nutrition 0.000 description 2
- 230000007547 defect Effects 0.000 description 2
- 238000010586 diagram Methods 0.000 description 2
- 238000004519 manufacturing process Methods 0.000 description 2
- 230000009286 beneficial effect Effects 0.000 description 1
- 230000015572 biosynthetic process Effects 0.000 description 1
- 230000001934 delay Effects 0.000 description 1
- 238000000605 extraction Methods 0.000 description 1
- 238000010438 heat treatment Methods 0.000 description 1
- 238000002360 preparation method Methods 0.000 description 1
- 238000007363 ring formation reaction Methods 0.000 description 1
Classifications
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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
- F26B21/06—Controlling, e.g. regulating, parameters of gas supply
- F26B21/08—Humidity
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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
- F26B21/06—Controlling, e.g. regulating, parameters of gas supply
- F26B21/10—Temperature; Pressure
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F26—DRYING
- F26B—DRYING SOLID MATERIALS OR OBJECTS BY REMOVING LIQUID THEREFROM
- F26B9/00—Machines or apparatus for drying solid materials or objects at rest or with only local agitation; Domestic airing cupboards
- F26B9/06—Machines or apparatus for drying solid materials or objects at rest or with only local agitation; Domestic airing cupboards in stationary drums or chambers
- F26B9/066—Machines or apparatus for drying solid materials or objects at rest or with only local agitation; Domestic airing cupboards in stationary drums or chambers the products to be dried being disposed on one or more containers, which may have at least partly gas-previous walls, e.g. trays or shelves in a stack
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- Engineering & Computer Science (AREA)
- Mechanical Engineering (AREA)
- General Engineering & Computer Science (AREA)
- Air Conditioning Control Device (AREA)
Abstract
Room is stood the invention discloses a kind of ceramic solar slab body and its stands method, comprising: cabinet, for placing and the closed hexahedron of dry base substrate;Humidity control system uniformly heats up to housing interior volume using hot-blast stove;Humidity control system uniformly humidifies housing interior volume using high-pressure micro mist humidifier;Damp and hot agitating device is stirred the intracorporal moisture of case and hot gas;The intracorporal moisture of case and hot gas are discharged exhaust system;Humiture observation system, the interior several sensors of distribution of cabinet are monitored the intracorporal temperature of case and humidity;Control system controls by the monitoring situation of humiture observation system and adjusts humidity control system, humidity control system, exhaust system.The present invention is different from drying shed, and the effect of drying shed is dry use, and the present invention is to reduce rate of drying, constant dry environment at a slow speed naturally.
Description
Technical field
The present invention relates to ceramic solar plate production technical field, specially a kind of ceramic solar slab body stand room and
It stands method.
Background technique
Ceramic solar slab body stands room, is the required working environment of ceramic solar plate large-scale industrialized production.
The technique of ceramic solar plate is produced at present: after biscuit support mould, being placed on one side naturally dry, then be burnt into dry
Kiln.Because the environment of placement is unstable, temperature and humidity is uncontrollable, and drying time is not managed, and has external wind harassment, and product is done
Defect is split often to generate in this process.
Summary of the invention
Room is stood the purpose of the present invention is to provide a kind of ceramic solar slab body and its stands method, it is above-mentioned to solve
Itd is proposed in background technique because the environment of placement is unstable, temperature and humidity is uncontrollable, and product is dry caused by drying time is not managed
The problem of splitting.
To achieve the above object, the invention provides the following technical scheme:
A kind of ceramic solar slab body standing room, comprising:
Cabinet, for placing and the closed hexahedron of dry base substrate;
Humidity control system uniformly heats up to housing interior volume using hot-blast stove;
Humidity control system uniformly humidifies housing interior volume using high-pressure micro mist humidifier;
Damp and hot agitating device is stirred the intracorporal moisture of case and hot gas;
The intracorporal moisture of case and hot gas are discharged exhaust system;
Humiture observation system, the interior several sensors of distribution of cabinet are monitored the intracorporal temperature of case and humidity;
Control system controls by the monitoring situation of humiture observation system and adjusts humidity control system, humidity tune
Section system, exhaust system.
Further, the cabinet is a rectangular hexahedron structure, and the cabinet is built using rock wool board.Rock wool board
With heat insulation function, scattering and disappearing for heat can be effectively placed.
Further, the humidity control system includes hot-blast stove, and the outlet side of the hot-blast stove and the first connecting tube connect
It connects, the cabinet periphery is fixed with an annular air duct, and first connecting tube is connected with the annular air duct, the case
One blast pipe for protruding into box house is installed, the every blast pipe is connected with annular air duct on each side of body
It is logical, one first solenoid valve is installed on the every blast pipe.
Further, one end that the blast pipe protrudes into the cabinet is fixed with baffle by the first fixed ring.
Further, the humidity control system includes high-pressure micro mist humidifier, the high-pressure micro mist humidifier and second
Connecting tube connection, is fixed with an annular air supply pipe below the annular air duct of cabinet periphery, second connecting tube with
The annular air supply pipe is connected, and installs on each side of the cabinet and is equipped with air inlet pipe, every institute below blast pipe
It states air inlet pipe to be connected with annular air supply pipe, a second solenoid valve is installed in the every air inlet pipe, the air inlet pipe is stretched
Enter and spray head is installed on one end of the cabinet.
Further, the humiture observation system includes first sensor group and second sensor group, and described first passes
Sensor group is arranged on the ground of box house, and the second sensor group is hung on cabinet on top surface by fixed link, institute
It states box house ground and is equipped with several green body racks, several first sensor groups are installed on the ground of the cabinet,
Several second sensor groups are installed, the first sensor group and second sensor group organize cyclization on the top surface of the cabinet
Green body rack is surrounded by shape.
Further, box house ground center is equipped with a first sensor group, and the box top center is equipped with
One second sensor group.
Further, the first sensor group and the second sensor group include a temperature sensor, one
Humidity sensor and fixed plate, the temperature sensor and the humidity sensor are each attached in fixed plate, the fixed plate
It is fixedly connected with cabinet or fixed link.
Further, the damp and hot agitating device includes ceiling fan, and the ceiling fan is mounted on box house top surface.
Further, the exhaust system includes negative-pressure air fan, and the negative-pressure air fan is mounted on the top surface of the outside of cabinet
On side, the corresponding position that negative-pressure air fan is installed on the cabinet is equipped with ventilation hole.
A kind of ceramic solar slab body stands the standing method in room, sets the intracorporal temperature of case by control system first
And humidity, control system carry out box house by controlling the hot-blast stove in humidity control system to box house for hot gas
Uniformly heating is given box house steam by the high-pressure micro mist humidifier in control humidity control system, is carried out to box house
Uniformly humidification, exhaust system at this time are in close state, and are realized with this flat to the green body on box house green body rack
Steady slowly natural predrying, humiture observation system is in real time adjusted the intracorporal temperature of case and humidity, when the intracorporal temperature of case
When degree or humidity are higher than setting value, the supply of hot gas or steam is reduced at this time, and opens exhaust system, by negative-pressure air fan by case
Intracorporal hot gas and moisture extraction;When the intracorporal temperature or humidity of case be lower than setting value when, control system increase intake and into
Tolerance is come with improving the supply of hot gas or steam so that temperature or humidity reaches setting value.
Compared with prior art, the beneficial effects of the present invention are: the present invention is different from drying shed, the effect of drying shed is dry
Dry use, and the present invention is to reduce rate of drying, constant dry environment at a slow speed naturally;The present invention changes current ceramic solar plate
The aging pre-drying process of biscuit changes into the placement environment before dry kiln, slows down rate of drying by the environment of constant temperature and humidity, delays
Slow aging drying, reduces the ratio of defects of product.Aging natural drying neck is stood for thin wall hollow ceramic solar slab body
Domain, to the environment for the constant temperature and humidity that one moisture of dry guarantee of green body gently spontaneously dries at a slow speed.The present invention passes through warm and humid
Control device is spent, the environment of a constant temperature and humidity is built, makes natural, slow, the stable predry of thin wall hollow ceramic solar plate
It is dry, capillary stomata is formed, product quality is helped to improve.It is dried instead of traditional natural.
Detailed description of the invention
Fig. 1 is main view of internal structure of the invention;
Fig. 2 is right view schematic diagram of internal structure of the invention;
Fig. 3 is vertical view schematic diagram of internal structure of the invention.
In figure: 1 cabinet, 2 hot-blast stoves, 3 first connecting tubes, 4 annular air ducts, 5 blast pipes, 6 first solenoid valves, 7 baffles,
8 first fixed rings, 9 high-pressure micro mist humidifiers, 10 second connecting tubes, 11 annular air supply pipes, 12 second fixed rings, 13 air inlet pipe,
14 spray heads, 15 second solenoid valves, 16 green body racks, 17 first sensor groups, 18 second sensor groups, 19 fixed links, 20 hang
Fan, 21 negative-pressure air fans.
Specific embodiment
Following will be combined with the drawings in the embodiments of the present invention, and technical solution in the embodiment of the present invention carries out clear, complete
Site preparation description, it is clear that described embodiments are only a part of the embodiments of the present invention, instead of all the embodiments.It is based on
Embodiment in the present invention, it is obtained by those of ordinary skill in the art without making creative efforts every other
Embodiment shall fall within the protection scope of the present invention.
Embodiment 1:
Referring to Fig.1-3, a kind of ceramic solar slab body stands room, comprising:
Cabinet 1, for placing and the closed hexahedron of dry base substrate;
Humidity control system uniformly heats up to 1 inner space of cabinet using hot-blast stove 2;
Humidity control system uniformly humidifies 1 inner space of cabinet using high-pressure micro mist humidifier 9;
Damp and hot agitating device, in cabinet 1 moisture and hot gas be stirred;
Exhaust system, by cabinet 1 moisture and hot gas be discharged;
Humiture observation system, in cabinet 1 several sensors of distribution in cabinet 1 temperature and humidity be monitored;
Control system controls by the monitoring situation of humiture observation system and adjusts humidity control system, humidity tune
Section system, exhaust system.
The cabinet 1 is a rectangular hexahedron structure, and the cabinet 1 is built using rock wool board.
The humidity control system includes hot-blast stove 2, and the outlet side of the hot-blast stove 2 is connect with the first connecting tube 3, described
1 periphery of cabinet is fixed with an annular air duct 4, and first connecting tube 3 is connected with the annular air duct 4, the cabinet 1
Each side on be equipped with one and protrude into blast pipe 5 inside cabinet 1, the every blast pipe 5 is connected with annular air duct 4
It is logical, one first solenoid valve 6 is installed on the every blast pipe 5.
One end that the blast pipe 5 protrudes into the cabinet 1 is fixed with baffle 7 by the first fixed ring 8.
Embodiment 2:
Referring to Fig.1-3, a kind of ceramic solar slab body stands room, comprising:
Cabinet 1, for placing and the closed hexahedron of dry base substrate;
Humidity control system uniformly heats up to 1 inner space of cabinet using hot-blast stove 2;
Humidity control system uniformly humidifies 1 inner space of cabinet using high-pressure micro mist humidifier 9;
Damp and hot agitating device, in cabinet 1 moisture and hot gas be stirred;
Exhaust system, by cabinet 1 moisture and hot gas be discharged;
Humiture observation system, in cabinet 1 several sensors of distribution in cabinet 1 temperature and humidity be monitored;
Control system controls by the monitoring situation of humiture observation system and adjusts humidity control system, humidity tune
Section system, exhaust system.
The cabinet 1 is a rectangular hexahedron structure, and the cabinet 1 is built using rock wool board.
The humidity control system includes hot-blast stove 2, and the outlet side of the hot-blast stove 2 is connect with the first connecting tube 3, described
1 periphery of cabinet is fixed with an annular air duct 4, and first connecting tube 3 is connected with the annular air duct 4, the cabinet 1
Each side on be equipped with one and protrude into blast pipe 5 inside cabinet 1, the every blast pipe 5 is connected with annular air duct 4
It is logical, one first solenoid valve 6 is installed on the every blast pipe 5.
One end that the blast pipe 5 protrudes into the cabinet 1 is fixed with baffle 7 by the first fixed ring 8.
The humidity control system includes high-pressure micro mist humidifier 9, the high-pressure micro mist humidifier 9 and the second connecting tube 10
Connection, is fixed with an annular air supply pipe 11 below the annular air duct 4 of 1 periphery of the cabinet, second connecting tube 10 with
The annular air supply pipe 11 is connected, and the lower section that blast pipe 5 is installed on each side of the cabinet 1 is equipped with air inlet pipe 13,
The every air inlet pipe 13 is connected with annular air supply pipe 11, is equipped with a second solenoid valve in the every air inlet pipe 13
15, the air inlet pipe 13 protrudes on one end of the cabinet 1 and is equipped with spray head 14.
Embodiment 3:
Referring to Fig.1-3, a kind of ceramic solar slab body stands room, comprising:
Cabinet 1, for placing and the closed hexahedron of dry base substrate;
Humidity control system uniformly heats up to 1 inner space of cabinet using hot-blast stove 2;
Humidity control system uniformly humidifies 1 inner space of cabinet using high-pressure micro mist humidifier 9;
Damp and hot agitating device, in cabinet 1 moisture and hot gas be stirred;
Exhaust system, by cabinet 1 moisture and hot gas be discharged;
Humiture observation system, in cabinet 1 several sensors of distribution in cabinet 1 temperature and humidity be monitored;
Control system controls by the monitoring situation of humiture observation system and adjusts humidity control system, humidity tune
Section system, exhaust system.
The cabinet 1 is a rectangular hexahedron structure, and the cabinet 1 is built using rock wool board.
The humidity control system includes hot-blast stove 2, and the outlet side of the hot-blast stove 2 is connect with the first connecting tube 3, described
1 periphery of cabinet is fixed with an annular air duct 4, and first connecting tube 3 is connected with the annular air duct 4, the cabinet 1
Each side on be equipped with one and protrude into blast pipe 5 inside cabinet 1, the every blast pipe 5 is connected with annular air duct 4
It is logical, one first solenoid valve 6 is installed on the every blast pipe 5.
One end that the blast pipe 5 protrudes into the cabinet 1 is fixed with baffle 7 by the first fixed ring 8.
The humidity control system includes high-pressure micro mist humidifier 9, the high-pressure micro mist humidifier 9 and the second connecting tube 10
Connection, is fixed with an annular air supply pipe 11 below the annular air duct 4 of 1 periphery of the cabinet, second connecting tube 10 with
The annular air supply pipe 11 is connected, and the lower section that blast pipe 5 is installed on each side of the cabinet 1 is equipped with air inlet pipe 13,
The every air inlet pipe 13 is connected with annular air supply pipe 11, is equipped with a second solenoid valve in the every air inlet pipe 13
15, the air inlet pipe 13 protrudes on one end of the cabinet 1 and is equipped with spray head 14.
The humiture observation system includes first sensor group 17 and second sensor group 18, the first sensor group
17 are arranged on the ground inside cabinet 1, and the second sensor group 18 is hung on cabinet 1 on top surface by fixed link 19,
1 internal ground of cabinet is equipped with several green body racks 16, and several first sensings are equipped on the ground of the cabinet 1
Device group 17 is equipped with several second sensor groups 18, the first sensor group 17 and the second sensing on the top surface of the cabinet 1
The group of device group 18, which circularizes, is surrounded green body rack 16.
The 1 internal ground center of cabinet is equipped with a first sensor group 17, and 1 end face center of cabinet is equipped with one second
Sensor group 18.
The first sensor group 17 and the second sensor group 18 include a temperature sensor, a humidity biography
Sensor and fixed plate, the temperature sensor and the humidity sensor are each attached in fixed plate, the fixed plate and cabinet 1
Or fixed link 19 is fixedly connected.
Embodiment 4:
Referring to Fig.1-3, a kind of ceramic solar slab body stands room, comprising:
Cabinet 1, for placing and the closed hexahedron of dry base substrate;
Humidity control system uniformly heats up to 1 inner space of cabinet using hot-blast stove 2;
Humidity control system uniformly humidifies 1 inner space of cabinet using high-pressure micro mist humidifier 9;
Damp and hot agitating device, in cabinet 1 moisture and hot gas be stirred;
Exhaust system, by cabinet 1 moisture and hot gas be discharged;
Humiture observation system, in cabinet 1 several sensors of distribution in cabinet 1 temperature and humidity be monitored;
Control system controls by the monitoring situation of humiture observation system and adjusts humidity control system, humidity tune
Section system, exhaust system.
The cabinet 1 is a rectangular hexahedron structure, and the cabinet 1 is built using rock wool board.
The humidity control system includes hot-blast stove 2, and the outlet side of the hot-blast stove 2 is connect with the first connecting tube 3, described
1 periphery of cabinet is fixed with an annular air duct 4, and first connecting tube 3 is connected with the annular air duct 4, the cabinet 1
Each side on be equipped with one and protrude into blast pipe 5 inside cabinet 1, the every blast pipe 5 is connected with annular air duct 4
It is logical, one first solenoid valve 6 is installed on the every blast pipe 5.
One end that the blast pipe 5 protrudes into the cabinet 1 is fixed with baffle 7 by the first fixed ring 8.
The humidity control system includes high-pressure micro mist humidifier 9, the high-pressure micro mist humidifier 9 and the second connecting tube 10
Connection, is fixed with an annular air supply pipe 11 below the annular air duct 4 of 1 periphery of the cabinet, second connecting tube 10 with
The annular air supply pipe 11 is connected, and the lower section that blast pipe 5 is installed on each side of the cabinet 1 is equipped with air inlet pipe 13,
The every air inlet pipe 13 is connected with annular air supply pipe 11, is equipped with a second solenoid valve in the every air inlet pipe 13
15, the air inlet pipe 13 protrudes on one end of the cabinet 1 and is equipped with spray head 14.
The humiture observation system includes first sensor group 17 and second sensor group 18, the first sensor group
17 are arranged on the ground inside cabinet 1, and the second sensor group 18 is hung on cabinet 1 on top surface by fixed link 19,
1 internal ground of cabinet is equipped with several green body racks 16, and several first sensings are equipped on the ground of the cabinet 1
Device group 17 is equipped with several second sensor groups 18, the first sensor group 17 and the second sensing on the top surface of the cabinet 1
The group of device group 18, which circularizes, is surrounded green body rack 16.
The 1 internal ground center of cabinet is equipped with a first sensor group 17, and 1 end face center of cabinet is equipped with one second
Sensor group 18.
The first sensor group 17 and the second sensor group 18 include a temperature sensor, a humidity biography
Sensor and fixed plate, the temperature sensor and the humidity sensor are each attached in fixed plate, the fixed plate and cabinet 1
Or fixed link 19 is fixedly connected.
The damp and hot agitating device includes ceiling fan 20, and the ceiling fan 20 is mounted in 1 inside top surface of cabinet.
The exhaust system includes negative-pressure air fan 21, and the negative-pressure air fan 21 is mounted on the top surface and side of the outside of cabinet 1
On face, the corresponding position that negative-pressure air fan 21 is installed on the cabinet 1 is equipped with ventilation hole.
The annular air supply pipe 11 is fixed on cabinet lateral surface by the second fixed ring 12, the annular air duct 4
Fixed form is consistent with the annular fixed form of air supply pipe 11.
Embodiment 5:
On the basis of embodiment 4, a kind of ceramic solar slab body stands the standing method in room, passes through control system first
Temperature and humidity in system setting cabinet 1, control system is by the hot-blast stove 2 in control humidity control system to inside cabinet 1
For hot gas, to uniformly being heated up inside cabinet 1, cabinet 1 is given by the high-pressure micro mist humidifier 9 in control humidity control system
Internal steam, to uniformly being humidified inside cabinet 1, exhaust system at this time is in close state, and is realized with this to cabinet 1
The steady slowly natural predrying of green body on internal green body rack 16, humiture observation system is in real time to the temperature in cabinet 1
And humidity is adjusted, and when the temperature or humidity in cabinet 1 is higher than setting value, reduces the supply of hot gas or steam at this time, and
Open exhaust system, by negative-pressure air fan 21 by cabinet 1 hot gas and moisture extract out;When the temperature or humidity in cabinet 1 is low
When setting value, control system increases intake and air inflow to improve the supply of hot gas or steam, comes so that temperature or humidity
Reach setting value.
Adjust in cabinet 1 temperature and when humidity, in cabinet 1 first sensor group 17 and second sensor group 18 carry out
Number clockwise, and the nearest first sensor group 17 and second sensor group 18 in each side of adjusting the distance is grouped, simultaneously
Also the first solenoid valve 6 and second solenoid valve 15 of 1 periphery of cabinet are numbered clockwise, first sensing of one side of distance
The first solenoid valve 6 in device group 17 and second sensor group 18 and same side and formation feedback between second solenoid valve 15, and
It is individually controlled by control system.
It is set when the monitoring result of first side of distance nearest first sensor group 17 or second sensor group 18 is less than
When definite value, when the temperature sensor in sensor group is less than setting value, control system controls the first electromagnetism on first side
Valve 6 opens the first solenoid valve 6 greatly to increase the intake of hot gas, Lai Zengjia temperature, when the humidity sensor of sensor group is less than
When setting value, control system control first side on second solenoid valve 15, by second solenoid valve 15 with increase steam into
Tolerance, Lai Zengjia humidity;Likewise, the aperture for being reduced by the first solenoid valve 6 or second solenoid valve 15 is come when being greater than the set value
It adjusts.
It is set when the monitoring result of second side of distance nearest first sensor group 17 or second sensor group 18 is less than
When definite value, when the temperature sensor in sensor group is less than setting value, control system controls the first electromagnetism on second side
Valve 6 opens the first solenoid valve 6 greatly to increase the intake of hot gas, Lai Zengjia temperature, when the humidity sensor of sensor group is less than
When setting value, control system control second side on second solenoid valve 15, by second solenoid valve 15 with increase steam into
Tolerance, Lai Zengjia humidity;Likewise, the aperture for being reduced by the first solenoid valve 6 or second solenoid valve 15 is come when being greater than the set value
It adjusts.
It is set when the monitoring result of the first sensor group 17 or second sensor group 18 nearest apart from third side is less than
When definite value, when the temperature sensor in sensor group is less than setting value, control system controls the first electromagnetism on third side
Valve 6 opens the first solenoid valve 6 greatly to increase the intake of hot gas, Lai Zengjia temperature, when the humidity sensor of sensor group is less than
When setting value, control system control third side on second solenoid valve 15, by second solenoid valve 15 with increase steam into
Tolerance, Lai Zengjia humidity;Likewise, the aperture for being reduced by the first solenoid valve 6 or second solenoid valve 15 is come when being greater than the set value
It adjusts.
It is set when the monitoring result of the 4th side of distance nearest first sensor group 17 or second sensor group 18 is less than
When definite value, when the temperature sensor in sensor group is less than setting value, control system controls the first electromagnetism on the 4th side
Valve 6 opens the first solenoid valve 6 greatly to increase the intake of hot gas, Lai Zengjia temperature, when the humidity sensor of sensor group is less than
When setting value, control system controls the second solenoid valve 15 on the 4th side, by second solenoid valve 15 with increase steam into
Tolerance, Lai Zengjia humidity;Likewise, the aperture for being reduced by the first solenoid valve 6 or second solenoid valve 15 is come when being greater than the set value
It adjusts.
It is obvious to a person skilled in the art that invention is not limited to the details of the above exemplary embodiments, Er Qie
In the case where without departing substantially from spirit or essential attributes of the invention, the present invention can be realized in other specific forms.Therefore, no matter
From the point of view of which point, the present embodiments are to be considered as illustrative and not restrictive, and the scope of the present invention is by appended power
Benefit requires rather than above description limits, it is intended that all by what is fallen within the meaning and scope of the equivalent elements of the claims
Variation is included within the present invention.Any reference signs in the claims should not be construed as limiting the involved claims.
Claims (10)
1. a kind of ceramic solar slab body stands room, it is characterised in that: include:
Cabinet, for placing and the closed hexahedron of dry base substrate;
Humidity control system uniformly heats up to housing interior volume using hot-blast stove;
Humidity control system uniformly humidifies housing interior volume using high-pressure micro mist humidifier;
Damp and hot agitating device is stirred the intracorporal moisture of case and hot gas;
The intracorporal moisture of case and hot gas are discharged exhaust system;
Humiture observation system, the interior several sensors of distribution of cabinet are monitored the intracorporal temperature of case and humidity;
Control system controls by the monitoring situation of humiture observation system and adjusts humidity control system, humidity regulation system
System, exhaust system.
2. ceramic solar slab body according to claim 1 stands room, it is characterised in that: the cabinet is one rectangular six
Face body structure, the cabinet are built using rock wool board.Rock wool board has heat insulation function, can effectively place dissipating for heat
It loses.
3. ceramic solar slab body according to claim 1 stands room, it is characterised in that: the humidity control system packet
Hot-blast stove is included, the outlet side of the hot-blast stove is connect with the first connecting tube, and the cabinet periphery is fixed with an annular air duct, institute
It states the first connecting tube to be connected with the annular air duct, is equipped with one on each side of the cabinet and protrudes into box house
Blast pipe, the every blast pipe are connected with annular air duct, and one first solenoid valve is equipped on the every blast pipe.
4. ceramic solar slab body according to claim 3 stands room, it is characterised in that: the blast pipe protrudes into described
One end of cabinet is fixed with baffle by the first fixed ring.
5. ceramic solar slab body according to claim 1 stands room, it is characterised in that: the humidity control system packet
High-pressure micro mist humidifier is included, the high-pressure micro mist humidifier is connect with the second connecting tube, the cabinet periphery annular air feed
An annular air supply pipe is fixed with below pipe, second connecting tube is connected with the annular air supply pipe, each of described cabinet
It is installed on side below blast pipe and air inlet pipe is installed, the every air inlet pipe is connected with annular air supply pipe, every institute
It states and a second solenoid valve is installed in air inlet pipe, the air inlet pipe protrudes on one end of the cabinet and is equipped with spray head.
6. ceramic solar slab body according to claim 1 stands room, it is characterised in that: the humiture observation system
Including first sensor group and second sensor group, the first sensor group is arranged on the ground of box house, and described
Two sensor groups are hung on cabinet on top surface by fixed link, and the box house ground is placed equipped with several green bodies
Frame is equipped with several first sensor groups on the ground of the cabinet, and several second sensings are equipped on the top surface of the cabinet
Device group, the first sensor group and second sensor group group circularize and are surrounded green body rack.
7. ceramic solar slab body according to claim 6 stands room, it is characterised in that: the first sensor group and
The second sensor group includes a temperature sensor, a humidity sensor and fixed plate, the temperature sensor and
The humidity sensor is each attached in fixed plate, and the fixed plate is fixedly connected with cabinet or fixed link.
8. ceramic solar slab body according to claim 1 stands room, it is characterised in that: the damp and hot agitating device packet
Ceiling fan is included, the ceiling fan is mounted on box house top surface.
9. ceramic solar slab body according to claim 1 stands room, it is characterised in that: the exhaust system includes negative
Pressure fan, the negative-pressure air fan are mounted on the top surface and side of the outside of cabinet, and pair of negative-pressure air fan is installed on the cabinet
Position is answered to be equipped with ventilation hole.
10. any one ceramic solar slab body stands the standing method in room in a kind of such as claim 1-9, feature exists
In: the intracorporal temperature of case and humidity are set by control system first, control system passes through the heat in control humidity control system
Wind furnace, for hot gas, uniformly heats up to box house to box house, passes through the high-pressure micro-mist in control humidity control system
Humidifier gives box house steam, is uniformly humidified to box house, and exhaust system at this time is in close state, with this reality
Slowly natural predrying steady to the green body on box house green body rack is showed, humiture observation system is in real time in cabinet
Temperature and humidity be adjusted, when the intracorporal temperature or humidity of case is higher than setting value, reduce the confession of hot gas or steam at this time
It answers, and opens exhaust system, extracted out the intracorporal hot gas of case and moisture by negative-pressure air fan;When the intracorporal temperature or humidity of case is low
When setting value, control system increases intake and air inflow to improve the supply of hot gas or steam, comes so that temperature or humidity
Reach setting value.
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN201910638169.2A CN110274445A (en) | 2019-07-16 | 2019-07-16 | A kind of ceramic solar slab body stands room and its stands method |
Applications Claiming Priority (1)
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Cited By (1)
| Publication number | Priority date | Publication date | Assignee | Title |
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| CN111550984A (en) * | 2020-03-25 | 2020-08-18 | 贵州省工业固体废弃物综合利用(建材)工程技术研究中心 | Unilateral business turn over advection automation room formula drying chamber system |
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Application publication date: 20190924 |