CN204022642U - Melting furnaces cooling end regulator - Google Patents
Melting furnaces cooling end regulator Download PDFInfo
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- CN204022642U CN204022642U CN201420450653.5U CN201420450653U CN204022642U CN 204022642 U CN204022642 U CN 204022642U CN 201420450653 U CN201420450653 U CN 201420450653U CN 204022642 U CN204022642 U CN 204022642U
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- melting furnaces
- pipeline
- draft
- induction apparatus
- cooling end
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Abstract
A kind of melting furnaces cooling end regulator, comprise pipeline, its one end is connected to melting furnaces, thus makes described melting furnaces by described pipeline and ft connection; And induction apparatus, it is connected with the other end of described pipeline, and described induction apparatus forms draft by described pipeline to described melting furnaces, thus controls the pressure of described melting furnaces.This device adopts perforate on the breastwork of melting furnaces both sides, outdoor is connected to by pipeline, pipeline rear portion arranges mechanical injection air device according to injection principle, pipeline is made to form draft to melting furnaces cooling end, two side ducts being arranged high temperature resistant variable valve to control both sides draft, accurately controlling furnace pressure by changing draft size.
Description
Technical field
The utility model relates to the technical field that sheet glass is produced, one forms draft by injection principle specifically, control draft size by control injection air quantity or regulating and controlling valve opening, thus realize the Novel voltage-regulating device automatically controlling melting furnaces cooling end furnace pressure.
Background technology
" four is large steady " and " four is little steady " in Improving Glass Manufacturing Processes is the prerequisite of stably manufactured high-quality glasswork.The stable melting end furnace pressure that comprises of the furnace pressure of one of " four is steady greatly " is stablized with cooling end furnace pressure stable.Melting end furnace pressure is stable can be regulated flashboard aperture to control by flue, but for the cooling end furnace pressure means that have nothing good, generally namely by the artificial coarse adjustment of relief hole.Although there is cooling end pressure regulation chimney at present, the complicacy of device and the indoor pollution discharge of hot gas, allowed some producers be reluctant to use.The Main Means of current control furnace pressure is still for melting end furnace pressure.Because melting end is communicated with by card neck with cooling end, melting furnaces change melting end klin pressure fluctuation in fiery process can disturb cooling end furnace pressure, can only artificially improve cooling end furnace pressure for avoiding interference, to reduce klin pressure fluctuation to the impact of producing as far as possible.If can by cooling end furnace pressure stability contorting within the specific limits, will be highly beneficial to glass production and management.
Utility model content
The utility model be intended to arrange a kind of can the device of accurate controlled cooling model portion furnace pressure automatically, by accurate controlled cooling model portion furnace pressure, meet the production requirement of high-quality glass.
In order to reach above-mentioned purpose, the utility model provides a kind of melting furnaces cooling end regulator, and comprise pipeline, its one end is connected to melting furnaces, thus makes described melting furnaces by described pipeline and ft connection; And induction apparatus, it is connected with the other end of described pipeline, and described induction apparatus forms draft by described pipeline to described melting furnaces, thus controls the pressure of described melting furnaces.
In some embodiments, described pipeline can be connected to the both sides breastwork of described melting furnaces.
In some embodiments, one or more pairs of described pipeline can be set.
In some embodiments, described pipeline is provided with variable valve, to control the draft that described induction apparatus is formed described melting furnaces by described pipeline.
In some embodiments, control described draft by the size of the ejection gas amount regulating described induction apparatus, and/or by regulating the aperture of described variable valve or controlling described draft.
This device adopts perforate on the breastwork of melting furnaces both sides, outdoor is connected to by pipeline, pipeline rear portion arranges mechanical injection air device according to injection principle, pipeline is made to form draft to melting furnaces cooling end, two side ducts being arranged high temperature resistant variable valve to control both sides draft, accurately controlling furnace pressure by changing draft size.
Below in conjunction with accompanying drawing, the description of the utility model purport is described by example, with clear other aspects of the present utility model and advantage.
Accompanying drawing explanation
By reference to the accompanying drawings, by detailed description hereafter, above-mentioned and other feature and advantage of the present utility model more clearly can be understood, wherein:
Fig. 1 is the front view of the melting furnaces cooling end regulator according to the utility model embodiment; And
Fig. 2 is the sectional view along figure A-A line.
Embodiment
See the accompanying drawing of the utility model specific embodiment, hereafter in more detail the utility model will be described.But the utility model can realize in many different forms, and should not be construed as by the restriction in the embodiment of this proposition.On the contrary, it is abundant and complete open in order to reach for proposing these embodiments, and makes those skilled in the art understand scope of the present utility model completely.
Description describes the melting furnaces cooling end regulator according to the utility model embodiment in detail.
As illustrated in fig. 1 and 2, be that pipe path system 1 connects melting furnaces cooling end space and induction apparatus 3.Variable valve 2, according to klin pressure fluctuation situation, controls draft automatically by controlling opening of valve, realizes furnace pressure and stablizes.Induction apparatus 3, by blower fan air-supply and injecting tube injection, forms necessary draft.
One end of pipeline is connected to melting furnaces, thus makes described melting furnaces by described pipeline and ft connection.The other end of pipeline is connected to induction apparatus.Described induction apparatus forms draft by described pipeline to described melting furnaces, thus controls the pressure of described melting furnaces.
Described pipeline can be connected to the both sides breastwork of described melting furnaces.One or more pairs of described pipeline can be set.
Described pipeline is provided with variable valve, to control the draft that described induction apparatus is formed described melting furnaces by described pipeline.Described draft is controlled by the size of the ejection gas amount regulating described induction apparatus, and/or by regulating the aperture of described variable valve or controlling described draft.
This device adopts perforate on the breastwork of melting furnaces both sides, outdoor is connected to by pipeline, pipeline rear portion arranges mechanical injection air device according to injection principle, pipeline is made to form draft to melting furnaces cooling end, two side ducts being arranged high temperature resistant variable valve to control both sides draft, accurately controlling furnace pressure by changing draft size.
More than describe preferred embodiment of the present utility model in detail.Should be appreciated that those of ordinary skill in the art just can make many modifications and variations according to design of the present utility model without the need to creative work.All technician in the art according to design of the present utility model on the basis of existing technology by the available technical scheme of logical analysis, reasoning, or a limited experiment, all should by the determined protection domain of claims.
Claims (5)
1. a melting furnaces cooling end regulator, is characterized in that, comprising:
Pipeline, its one end is connected to melting furnaces, thus makes described melting furnaces by described pipeline and ft connection; And
Induction apparatus, it is connected with the other end of described pipeline, and described induction apparatus forms draft by described pipeline to described melting furnaces, thus controls the pressure of described melting furnaces.
2. regulator according to claim 1, is characterized in that, described pipeline can be connected to the both sides breastwork of described melting furnaces.
3. regulator according to claim 2, is characterized in that, can arrange one or more pairs of described pipeline.
4. regulator according to claim 3, is characterized in that, described pipeline is provided with variable valve, to control the draft that described induction apparatus is formed described melting furnaces by described pipeline.
5. regulator according to claim 4, is characterized in that, controls described draft by the size of the ejection gas amount regulating described induction apparatus, and/or by regulating the aperture of described variable valve or controlling described draft.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201420450653.5U CN204022642U (en) | 2014-08-11 | 2014-08-11 | Melting furnaces cooling end regulator |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN201420450653.5U CN204022642U (en) | 2014-08-11 | 2014-08-11 | Melting furnaces cooling end regulator |
Publications (1)
Publication Number | Publication Date |
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CN204022642U true CN204022642U (en) | 2014-12-17 |
Family
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Family Applications (1)
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CN201420450653.5U Active CN204022642U (en) | 2014-08-11 | 2014-08-11 | Melting furnaces cooling end regulator |
Country Status (1)
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CN (1) | CN204022642U (en) |
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2014
- 2014-08-11 CN CN201420450653.5U patent/CN204022642U/en active Active
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