CN207793057U - A kind of improved glass tempering furnace supply air system - Google Patents
A kind of improved glass tempering furnace supply air system Download PDFInfo
- Publication number
- CN207793057U CN207793057U CN201721897882.1U CN201721897882U CN207793057U CN 207793057 U CN207793057 U CN 207793057U CN 201721897882 U CN201721897882 U CN 201721897882U CN 207793057 U CN207793057 U CN 207793057U
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- Prior art keywords
- fixed
- pipe
- welded
- ajutage
- outside
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- Filtering Of Dispersed Particles In Gases (AREA)
- Drying Of Solid Materials (AREA)
Abstract
The utility model discloses a kind of improved glass tempering furnace supply air systems, including air blower, described air blower one end is connected with blast pipe, and blast pipe upper surface is fixed with strainer, the air blower other end is connected with ajutage, micropore filter plate is fixed with inside the ajutage, and it is fixed with lift-pull handle at the top of micropore filter plate, the ajutage side is connected with dehumidification pipe, the dehumidification pipe lower surface is welded with drain sump at center, it is connected with drying tube on the outside of the dehumidification pipe, the drying tube inner bottom is provided with heating cabinet, it is welded with collection wind cabin on the outside of the drying tube, and collection wind cabin outer surface is welded with discharge pipe, it is connected with bourdon tube inside the discharge pipe, and it is fixed with sealing plate on the outside of bourdon tube.In the utility model, which realizes the drying cleaning processing of air-supply gas, while also increasing the contact area of gas and annealing furnace, has stronger practicability.
Description
Technical field
The utility model is related to glass working arts field more particularly to a kind of improved glass tempering furnace supply air systems.
Background technology
Glass tempering furnace also known as glass fibre reinforced plastic equipment, glass tempering unit, annealing furnace, tempering apparatus, tempering unit etc., glass
Glass annealing furnace is to form compressive stress layer, internal formation tensile stress layer in glass surface using either physically or chemically;When glass by
When to outer force effect, compressive stress layer can offset part tensile stress, avoid glass breaking, to reach the mesh for improving strength of glass
, in annealing furnace in use, needing to coordinate supply air system to blowing in annealing furnace, to ensure the safe to use of annealing furnace
Stablize.
However there is some shortcomingss in use for existing glass tempering furnace supply air system, for gas of blowing
Neatly processing is upper incomplete for the drying of body, not big enough simultaneously for the air supply areas of air-supply gas, reduces supply air system
Practicability.
Utility model content
Purpose of the utility model is to solve disadvantages existing in the prior art, and a kind of improved glass proposed
Annealing furnace supply air system.
To achieve the goals above, the utility model uses following technical solution:A kind of improved glass tempering furnace is sent
Wind system, including air blower, described air blower one end is connected with blast pipe, and blast pipe upper surface is fixed with strainer, the drum
The wind turbine other end is connected with ajutage, micropore filter plate is fixed with inside the ajutage, and be fixed with lifting at the top of micropore filter plate
Handle, the ajutage side are connected with dehumidification pipe, and activated carbon adsorption plate is fixed at the dehumidification pipe inside center, described to remove
It is welded with drain sump at the center of wet pipe lower surface, is connected with drying tube on the outside of the dehumidification pipe, the drying tube inner bottom is set
It is equipped with heating cabinet, collection wind cabin is welded on the outside of the drying tube, and collect wind cabin outer surface and be welded with discharge pipe, in the discharge pipe
Portion is connected with bourdon tube, and is fixed with sealing plate on the outside of bourdon tube.
As further describing for above-mentioned technical proposal:
The cross section of the strainer is V-type incline structure.
As further describing for above-mentioned technical proposal:
There are two the micropore filter plate is installed altogether, and it is mutually parallel between two micropore filter plates.
As further describing for above-mentioned technical proposal:
The junction of the micropore filter plate and ajutage is welded with for the fixed grip block of anticreep.
As further describing for above-mentioned technical proposal:
The cross section of the sealing plate is trapezium structure, and inside is incline structure, and outside is parallel construction.
It is first vertical structure by blast pipe, air inlet opening end height is higher so that air blower in the utility model
The air that the dry air of high height can be sucked, while suction head lower also being avoided to contain a large amount of impurities, it is ensured that
The opposite cleaning of air in into air blower on the one hand can be to the sky in ajutage secondly by the micropore filter plate of setting
Gas plays the role of dual dedusting absorption, on the other hand can also be dismantled micropore filter plate by lift-pull handle, to just
It is operated in the disassembly, cleaning of micropore filter plate, the operating flexibility of system is improved, finally by the sealing plate of setting, to outlet air
While pipe plays seal protection, but also gas derived from discharge pipe can be equal to both sides along the inclined inner surface of sealing plate
Uniform flow is dynamic, to increase the contact area of gas and annealing furnace, enhances the working efficiency of annealing furnace.
Description of the drawings
Fig. 1 be the utility model proposes a kind of improved glass tempering furnace supply air system structural schematic diagram;
Fig. 2 is the structural schematic diagram of the utility model dedusting mechanism;
Fig. 3 is the structural schematic diagram of the utility model discharge pipe.
Marginal data:
1- strainers, 2- blast pipes, 3- air blowers, 4- ajutages, 5- micropores filter plate, 6- dehumidification pipes, 7- activated carbon adsorptions plate,
8- drain sumps, 9- heating cabinets, 10- drying tubes, 11- collection wind cabin, 12- discharge pipes, 13- lift-pull handles, 14- grip blocks, 15- springs
Pipe, 16- sealing plates.
Specific implementation mode
The following will be combined with the drawings in the embodiments of the present invention, carries out the technical scheme in the embodiment of the utility model
Clearly and completely describe, it is clear that the described embodiments are only a part of the embodiments of the utility model, rather than whole
Embodiment.
Referring to Fig.1-3, a kind of improved glass tempering furnace supply air system, including air blower 3,3 one end of air blower are connected with
Blast pipe 2, and 2 upper surface of blast pipe is fixed with strainer 1,3 other end of air blower is connected with ajutage 4, and 4 inside of ajutage is fixed
There is micropore filter plate 5, and 5 top of micropore filter plate is fixed with lift-pull handle 13,4 side of ajutage is connected with dehumidification pipe 6, dehumidification pipe 6
It is fixed with activated carbon adsorption plate 7 inside center, drain sump 8 is welded at 6 lower surface center of dehumidification pipe, 6 outside of dehumidification pipe connects
It is connected to drying tube 10,10 inner bottom of drying tube is provided with heating cabinet 9, and 10 outside of drying tube is welded with collection wind cabin 11, and collects wind
11 outer surface of storehouse is welded with discharge pipe 12, bourdon tube 15 is connected with inside discharge pipe 12, and 15 outside of bourdon tube is fixed with sealing
Plate 16.
The cross section of strainer 1 is V-type incline structure, and capable of avoiding 1 upper surface of strainer, there is a phenomenon where dusts to assemble, and prevents
Strainer 1 is there is a situation where blocking, and there are two the total installations of micropore filter plate 5, and is mutually parallel between two micropore filter plates 5, to air-supply
Air in pipe 4 plays the suction-operated of Dual high-efficiency, and the junction of micropore filter plate 5 and ajutage 4 is welded with solid for anticreep
The cross section of fixed grip block 14, sealing plate 16 is trapezium structure, and inside is incline structure, and outside is parallel construction, a side
Face can be sealed discharge pipe 12 protection, on the other hand also play the role of both sides water conservancy diversion to air, increase air with
The contact area of annealing furnace.
Operation principle:In use, supply air system is mounted on job site, start air blower 3, outside air passes through strainer
Enter in blast pipe 2 after 1, then flows into ajutage 4, dual dedusting absorption is carried out by two micropore filter plates 5, after adsorbing
Air enters in dehumidification pipe 6, is tightly held by activated carbon the absorption of plate 7, and the liquid drop of generation is low to collect in drain sump 8, later
Air enters in drying tube 10, is thermally dried by the resistive heater in heating cabinet 9, and then air flows into collection wind cabin 11,
And enter in discharge pipe 12, air can impact sealing plate 16 at this time so that bourdon tube 15 is stretched deformation, it is finally dry neatly
Gas along sealing plate 16 import annealing furnace in so that the supply air system entire run.
The preferable specific implementation mode of the above, only the utility model, but the scope of protection of the utility model is not
Be confined to this, any one skilled in the art within the technical scope disclosed by the utility model, according to this practicality
Novel technical solution and its utility model design are subject to equivalent substitution or change, should all cover the protection model in the utility model
Within enclosing.
Claims (5)
1. a kind of improved glass tempering furnace supply air system, including air blower (3), which is characterized in that described air blower (3) one end
It is connected with blast pipe (2), and blast pipe (2) upper surface is fixed with strainer (1), air blower (3) other end is connected with air-supply
It manages (4), micropore filter plate (5) is fixed with inside the ajutage (4), and lift-pull handle (13) is fixed at the top of micropore filter plate (5),
Ajutage (4) side is connected with dehumidification pipe (6), and activated carbon adsorption plate is fixed at dehumidification pipe (6) inside center
(7), it is welded with drain sump (8) at dehumidification pipe (6) the lower surface center, drying tube is connected on the outside of the dehumidification pipe (6)
(10), drying tube (10) inner bottom is provided with heating cabinet (9), and collection wind cabin is welded on the outside of the drying tube (10)
(11), and collection wind cabin (11) outer surface is welded with discharge pipe (12), and bourdon tube (15) is connected with inside the discharge pipe (12), and
It is fixed with sealing plate (16) on the outside of bourdon tube (15).
2. a kind of improved glass tempering furnace supply air system according to claim 1, which is characterized in that the strainer (1)
Cross section be V-type incline structure.
3. a kind of improved glass tempering furnace supply air system according to claim 1, which is characterized in that the micropore filter plate
(5) it altogether there are two installations, and is mutually parallel between two micropore filter plates (5).
4. a kind of improved glass tempering furnace supply air system according to claim 1, which is characterized in that the micropore filter plate
(5) it is welded with for the fixed grip block of anticreep (14) with the junction of ajutage (4).
5. a kind of improved glass tempering furnace supply air system according to claim 1, which is characterized in that the sealing plate
(16) cross section is trapezium structure, and inside is incline structure, and outside is parallel construction.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201721897882.1U CN207793057U (en) | 2017-12-29 | 2017-12-29 | A kind of improved glass tempering furnace supply air system |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201721897882.1U CN207793057U (en) | 2017-12-29 | 2017-12-29 | A kind of improved glass tempering furnace supply air system |
Publications (1)
Publication Number | Publication Date |
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CN207793057U true CN207793057U (en) | 2018-08-31 |
Family
ID=63279878
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN201721897882.1U Expired - Fee Related CN207793057U (en) | 2017-12-29 | 2017-12-29 | A kind of improved glass tempering furnace supply air system |
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CN (1) | CN207793057U (en) |
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN113213741A (en) * | 2021-06-23 | 2021-08-06 | 朱盛菁 | Vacuum glass tempering production process and tempering air control system |
KR102445392B1 (en) * | 2021-12-09 | 2022-09-20 | 곽남석 | Glass temperature furnace with heater |
-
2017
- 2017-12-29 CN CN201721897882.1U patent/CN207793057U/en not_active Expired - Fee Related
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN113213741A (en) * | 2021-06-23 | 2021-08-06 | 朱盛菁 | Vacuum glass tempering production process and tempering air control system |
KR102445392B1 (en) * | 2021-12-09 | 2022-09-20 | 곽남석 | Glass temperature furnace with heater |
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Legal Events
Date | Code | Title | Description |
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GR01 | Patent grant | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20180831 Termination date: 20201229 |