CN201885540U - Multi-layered furnace cooling system - Google Patents

Multi-layered furnace cooling system Download PDF

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Publication number
CN201885540U
CN201885540U CN2010206196696U CN201020619669U CN201885540U CN 201885540 U CN201885540 U CN 201885540U CN 2010206196696 U CN2010206196696 U CN 2010206196696U CN 201020619669 U CN201020619669 U CN 201020619669U CN 201885540 U CN201885540 U CN 201885540U
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CN
China
Prior art keywords
air
lamp door
doab
anger
giving vent
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Expired - Lifetime
Application number
CN2010206196696U
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Chinese (zh)
Inventor
蔡庆耀
邱千瑞
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Zhisheng Technology Guangzhou Co Ltd
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Zhisheng Technology Guangzhou Co Ltd
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Priority to CN2010206196696U priority Critical patent/CN201885540U/en
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Publication of CN201885540U publication Critical patent/CN201885540U/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

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Abstract

The utility model discloses a multi-layered furnace cooling system. A plurality of light frames are arranged at different layers in a furnace housing body, each light frame is provided with a plurality of air holes, the internal area of each light frame is divided into an influent air confluence area and an effluent air confluence area, and air suppliers and exhausts are respectively arranged at both sides of the light frames on the furnace housing body. The air suppliers supply air toward each light frame to produce a cooling effect, the airflow of wind gets into the influent air confluence areas and the effluent air confluence areas via the air holes, the air flow in the influent air confluence areas then flows into the effluent air confluence areas, and is exhausted out from each effluent air confluence area by the exhausts all together, and thereby circulatory cooling is formed.

Description

The multihearth cooling system
Technical field
The utility model relates to a kind of multihearth cooling system.
Background technology
LCD (LCD) is a kind of new full-color Display Technique of using, make image quality comparatively clear, save the energy and the less display of volume, basically, the notion of whole lcd technology is to intercept or to allow light penetration as liquid crystal such as the gate, and that LCD has compared to general crt display is more clear, image quality more accurately, with truer, more saturated color presents, and lcd technology has been exempted heavy iconoscope, other has the advantage that pure plane shows and the space is saved, lcd technology uses power supply still less in addition, the heat that comes out still less relatively produces comfortable, remarkable surcharge;
TFT-LCD panel flow process mainly can be divided into for three stages:
1.Array flow process: on glass substrate, form electric crystal array film.
2.Cell flow process: arraying bread board and colored filter are fitted, and in it, pour into liquid crystal.
3.Module flow process: with the panel of fitting, module backlight, driving and control panel combination.
With the Array flow process, mainly be in regular turn through steps such as clean before the film forming, thin film deposition, photoresistance coating, exposure, development, heating, etching, strippings, and repeat at least five described step beginnings and can finish the Array flow process, and development step is to dissolve through the photoresistance that developer will be exposed under the ultraviolet ray, take away with the ionized water flushing again, the follow-up heating of developing then reaches drying effect with ultraviolet radiation modality, and multihearth is the designed equipment of a kind of LCD of being used in flow process.
Multihearth inside is longitudinal layered a plurality of frameworks that set up, the framework front can be in order to the carrying working substance, the back side then is equipped with a plurality of quartz burners, with the quartz burner at the framework back side, upper strata the working substance in lower floor framework front is shone processing, and working substance is carried out drying with temperature whole in the body of heater;
And quartz burner need be controlled in the flow process standard the irradiation temperature of working substance, thus body of heater must carry out suitable cooling to fluorescent tube and make in its temperature that maintains standard, and with the stability of this prolonging lamp tube service life and irradiation.
Summary of the invention
The utility model provides a kind of multihearth cooling system, and its design concept is to utilize the mode of gas circulation to control the temperature of quartz burner in the stove.
For reaching aforementioned purpose, the utility model is that a plurality of lamp doors have been set up in layering in the grate body, and each lamp door is furnished with a plurality of pores, and is separated out the air inlet doab and the doab of giving vent to anger in the lamp door inner area, this air inlet doab and this are given vent to anger and are separated with the frame beam between the doab, and this frame beam is offered a plurality of head pieces;
The positive row of each lamp door establishes a plurality of carriers for the carrying working substance, the back side then is provided with socket, in order to quartz burner to be installed, this grate body is respectively equipped with air-supply arrangement and extractor fan at the side of lamp door, this air-supply arrangement is offered air outlet between adjacent lamp door, the doab of giving vent to anger of corresponding each lamp door of this extractor fan respectively joins with exhaust column;
More specifically, the utility model is to establish frame lid in each lamp door front cover, and this frame lid also is furnished with a plurality of pores, and carrier is then arranged and is located at this frame and covers; And this grate body is to be respectively equipped with this air-supply arrangement and this extractor fan in the left and right sides of lamp door; At least be provided with the blast pipe that is communicated with head piece in this doab of giving vent to anger, this blast pipe is to open outside lamp door, and is connected with pairing exhaust column with adapter;
Pass through said structure, this air-supply arrangement sees through air outlet and blows towards between lamp door, quartz burner and the positive temperature of carrying working substance of lower floor's lamp door with the cooling lamp door back side, upper strata, the air-flow of wind is scurried into air inlet and the doab of giving vent to anger by pore, air-flow in this air inlet doab flows into the doab of giving vent to anger from the head piece of this frame beam again, and unification sees through exhaust column by extractor fan and from the doab of respectively giving vent to anger air-flow extracted out.
The utility model is furnished with pore on each lamp door, and in inner air inlet, the doab of giving vent to anger of forming of lamp door, make each lamp door form the structure of the inside and outside gaseous exchange effect of tool, and cooperate air-supply arrangement that the lamp door of each layer is blowed cold wind, and the hot blast that absorbs behind heat and the moisture is scurried into lamp door inside by pore, just extracted out outside the body of heater by extractor fan along its inner convective structure, utilize the cold air-flow circulation that heat goes out of advancing, one can control the irradiation temperature of quartz burner efficiently and reduce its fault rate, and two quicken the drying of working substance that lamp door carries.
Description of drawings
Fig. 1 is the three-dimensional exploded view in the utility model multihearth cooling system lamp door front.
Fig. 2 is the three-dimensional exploded view at the utility model lamp door back side.
Fig. 3 is the structure chart after the assembling of the utility model overall structure is finished.
Fig. 4 is the utility model air-supply arrangement blows cold wind to each layer lamp door an air-flow vertical section schematic diagram.
Fig. 5 is the air-flow schematic cross section that the utility model lamp door inside and extractor fan are extracted hot blast out.
Description of reference numerals:
1, grate body, 10, lamp door, 101, pore, 102, socket, 103, the air inlet doab, 104, the doab of giving vent to anger, 1041 blast pipes, 1042, adapter, 105, the frame beam, 1051, head piece, 106, frame lid, 107, carrier, 11, air-supply arrangement, 111, air outlet, 12, extractor fan, 121, exhaust column, 2, quartz burner, 3, working substance 3.
The specific embodiment
The utility model is relevant a kind of multihearth cooling system, be that a plurality of lamp doors have been set up in layering in a grate body, each lamp door is furnished with a plurality of pores, and be separated out the air inlet doab and the doab of giving vent to anger in the lamp door inner area, this air inlet doab and this are given vent to anger and are separated with the frame beam between the doab, this frame beam is offered a plurality of head pieces, is provided with the blast pipe that is communicated with head piece at least in this doab of giving vent to anger, and this blast pipe is opened outside lamp door;
The positive row of each lamp door establishes a plurality of carriers for the carrying working substance, and the back side then is provided with socket, and in order to quartz burner to be installed, this grate body is respectively equipped with air-supply arrangement and extractor fan at the side of lamp door.
See also Fig. 1 to shown in Figure 3, dependency structure figure for the utility model preferred embodiment, in the present embodiment, this grate body 1 is longitudinal layered to set up a plurality of lamp doors 10, each lamp door 10 is end weak point end to end, the cuboid aspect that left and right sides is long, each lamp door 10 is furnished with a plurality of pores 101 overleaf and is provided with socket 102, in order to quartz burner 2 to be installed, each lamp door 10 inside then is separated out air inlet doab 103 to the framework tail end, be separated out the doab 104 of giving vent to anger to the framework head end, this air inlet doab 103 and this give vent to anger 104 of doabs be separated with frame beam 105 do space region every, this frame beam 105 is offered a plurality of perforation air inlets at interval, the doab 103 of giving vent to anger, 104 head piece 1051, this blast pipe 1041 that 104 corresponding lamp door 10 left and right sides each setting in doab is communicated with head piece 1051 of giving vent to anger, each blast pipe 1041 each free lamp door 10 left and right sides is opened outside lamp door 10, each lamp door 10 front cover is established frame lid 106, this frame lid 106 also is furnished with a plurality of pore 101 air feed streams and flows into lamp door 10 inside, and 107 rows of a plurality of carriers are located on this frame lid 106;
And this grate body 1 is to be respectively equipped with air-supply arrangement 11 and extractor fan 12 in the left and right sides of lamp door 10, air outlet 111 is offered in the position of each air-supply arrangement 11 corresponding each lamp door 10, the doab 104 of giving vent to anger of each extractor fan 12 corresponding each lamp door 10 respectively joins with exhaust column 121, and the blast pipe 1041 of the doab 104 of giving vent to anger is connected with pairing exhaust column 121 with adapter 1042.
Function mode about present embodiment, please cooperate with reference to Fig. 4 and shown in Figure 5, this grate body 1 is located at the air-supply arrangement 11 of lamp door 10 both sides and is sent cold wind through air outlet 111 towards 10 of lamp doors, the cold wind that is blown into 10 of lamp doors can reduce the temperature of upper strata lamp door 10 back side quartz burners 2, and the moisture of taking away lower floor's lamp door 10 front carrier 107 working substances that carry 3 is accelerated its drying, and the hot blast behind absorption heat and the moisture is scurried into lamp door 10 inside by pore 101 air inlet, the doab 103 of giving vent to anger, 104, air-flow in this air inlet doab 103 flows into the doab 104 of giving vent to anger from the head piece 1051 of this frame beam 105 again, and unified extractor fan 12 by both sides sees through exhaust column 121 and from the doab 104 of respectively giving vent to anger air-flow extracted out.
The convective structure that present embodiment utilizes lamp door 10 inside to have, and air-supply, extractor fan 11,12 are cold advances the air-flow circulation that heat goes out, one can control the irradiation temperature of quartz burner 2 efficiently and reduce its fault rate, and two quicken the drying of lamp door 10 working substance that carries 3.
Only be specific embodiment of the utility model below, do not limit protection domain of the present utility model with this; Any replacement and the improvement done on the basis of not violating the utility model design all belong to protection domain of the present utility model.

Claims (5)

1. multihearth cooling system, it is characterized in that, a plurality of lamp doors have been set up in layering in the grate body, each lamp door is furnished with a plurality of pores, and be separated out the air inlet doab and the doab of giving vent to anger in the lamp door inner area, this air inlet doab and this are given vent to anger and are separated with the frame beam between the doab, and this frame beam is offered a plurality of head pieces;
The positive row of each lamp door establishes a plurality of carriers for the carrying working substance, the back side then is provided with socket, in order to quartz burner to be installed, this grate body is respectively equipped with air-supply arrangement and extractor fan at the side of lamp door, this air-supply arrangement is offered air outlet between adjacent lamp door, the doab of giving vent to anger of corresponding each lamp door of this extractor fan respectively joins with exhaust column;
This air-supply arrangement sees through air outlet and blows towards between lamp door, quartz burner and the positive temperature of carrying working substance of lower floor's lamp door with the cooling lamp door back side, upper strata, the air-flow of wind is scurried into air inlet and the doab of giving vent to anger by pore, air-flow in this air inlet doab flows into the doab of giving vent to anger from the head piece of this frame beam again, and unification sees through exhaust column by extractor fan and from the doab of respectively giving vent to anger air-flow extracted out.
2. multihearth cooling system as claimed in claim 1 is characterized in that, each lamp door front cover is established frame lid, and this frame lid also is furnished with a plurality of pores, and carrier is then arranged and is located at this frame and covers.
3. multihearth cooling system as claimed in claim 1 is characterized in that, this grate body is to be respectively equipped with this air-supply arrangement and this extractor fan in the left and right sides of lamp door.
4. multihearth cooling system as claimed in claim 2 is characterized in that, this grate body is to be respectively equipped with this air-supply arrangement and this extractor fan in the left and right sides of lamp door.
5. as each described multihearth cooling system in the claim 1 to 4, it is characterized in that be provided with the blast pipe that is communicated with head piece at least in this doab of giving vent to anger, this blast pipe is opened, and is connected with pairing exhaust column with adapter outside lamp door.
CN2010206196696U 2010-11-19 2010-11-19 Multi-layered furnace cooling system Expired - Lifetime CN201885540U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN2010206196696U CN201885540U (en) 2010-11-19 2010-11-19 Multi-layered furnace cooling system

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN2010206196696U CN201885540U (en) 2010-11-19 2010-11-19 Multi-layered furnace cooling system

Publications (1)

Publication Number Publication Date
CN201885540U true CN201885540U (en) 2011-06-29

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Application Number Title Priority Date Filing Date
CN2010206196696U Expired - Lifetime CN201885540U (en) 2010-11-19 2010-11-19 Multi-layered furnace cooling system

Country Status (1)

Country Link
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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102921620A (en) * 2012-10-31 2013-02-13 广州菁彩光电科技有限公司 Efficient UV (Ultra Violet) curing equipment with cold air flow guide and heat pipe radiation functions

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102921620A (en) * 2012-10-31 2013-02-13 广州菁彩光电科技有限公司 Efficient UV (Ultra Violet) curing equipment with cold air flow guide and heat pipe radiation functions
CN102921620B (en) * 2012-10-31 2014-01-22 广州菁彩光电科技有限公司 Efficient UV (Ultra Violet) curing equipment with cold air flow guide and heat pipe radiation functions

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Granted publication date: 20110629

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