CN205152071U - Production evacuating device for vacuum glass - Google Patents

Production evacuating device for vacuum glass Download PDF

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Publication number
CN205152071U
CN205152071U CN201520873463.9U CN201520873463U CN205152071U CN 205152071 U CN205152071 U CN 205152071U CN 201520873463 U CN201520873463 U CN 201520873463U CN 205152071 U CN205152071 U CN 205152071U
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CN
China
Prior art keywords
vacuum
tight
housing
casing
glass
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Withdrawn - After Issue
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CN201520873463.9U
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Chinese (zh)
Inventor
滕少波
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Individual
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Individual
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Priority to CN201520873463.9U priority Critical patent/CN205152071U/en
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Publication of CN205152071U publication Critical patent/CN205152071U/en
Withdrawn - After Issue legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

The utility model relates to a production evacuating device for vacuum glass belongs to glass and makes the field, and it needs process heating and two steps of evacuation respectively usually mainly to solve present glass evacuation, and the process is loaded down with trivial details, longer problem of production time. The utility model provides a can close two steps of evacuating device that unite two into one of piece with evacuation and heating banding, including vacuum cap and box, the vacuum cap is the lower extreme open -ended internal cavity body, and the top sets up counterweight assembly and last heater in it, and the box is the upper end open -ended internal cavity body, and size, shape are all matchd with the vacuum cap, are located the vacuum cap below. The utility model discloses can heat vacuum glass in the evacuation, simplify production processes, shorten vacuum glass's production cycle by a wide margin.

Description

Produce vacuum glass vacuum extractor
Technical field
The utility model relates to a kind of production vacuum glass vacuum extractor, belongs to glass manufacturing area.
Background technology
The vacuum layer of vacuum glass can effective heat conduction inside and outside air lock, has good heat preservation and insulation, can reduce the transmission of noise, vacuum glass because of its superior performance applications widely.Current production vacuum glass vacuumizes usually to be needed respectively through heating and vacuumizes two steps, first high intermediate temperature sealing closes sheet, move to after cooling in vaccum-pumping equipment, heat up and carry out vacuum pumping again, and to bleeding point be reserved on glass, and glass is larger, the pumpdown time is longer, and vacuum effectiveness is poorer.Such two step manufacturing procedures are loaded down with trivial details, and production efficiency is low, and effect is undesirable.
Utility model content
The purpose of this utility model is the production stage simplifying above-mentioned vacuum glass, and providing a kind of can will vacuumize and add hot edge seal and close the vacuum extractor that sheet two step unites two into one.
Concrete technical scheme is: the utility model comprises vacuum (-tight) housing and casing; Vacuum (-tight) housing is the inner cavity body of lower ending opening, and its inside arranges upper heater; Casing is the inner cavity body of upper end open, and size, shape are all mated with vacuum (-tight) housing, is positioned at below vacuum (-tight) housing, and box house arranges lower well heater.Upper and lower well heater can work simultaneously, ensures that inner glass is even, rapid heating.
Be provided with balance weight assembly between vacuum (-tight) housing and upper heater, balance weight assembly top connects vacuum (-tight) housing, and bottom connects upper heater.
Balance weight assembly has two kinds of forms, and one is balancing weight, and by the gravity-pressing glass of balancing weight self, another kind of mode is the combination of balancing weight and stage clip, while utilizing balancing weight self gravitation pressed glass, utilize stage clip additionally to provide a pressure.Balance weight assembly ensures glass by Effective Compaction in the process vacuumized, with the bonding efficiency of the fusion improving tackiness agent.
Further, balancing weight is insulating ceramic balancing weight.
Ceramic cushion block is provided with between casing and lower well heater.
Vacuum (-tight) housing upper end is provided with lifting gear, and lifting gear is connected with vacuum (-tight) housing, drives vacuum (-tight) housing vertically to move, enters when this vacuumizes working district and fallen from top by vacuum (-tight) housing, cover on casing at vacuum glass.Another kind of mode, casing lower end is provided with lifting device, and lifting device is connected with casing, and drive casing vertically moves, and to enter when this vacuumizes working district by casing from lower end jack-up, with vacuum (-tight) housing contact seal at vacuum glass.
Casing or vacuum (-tight) housing cavity surrounding arrange sealed strip, and sealed strip is temperature resistant encapsulation bar.
Place vacuum glass in casing, bottom half arranges transport unit, and casing along movable workbench, can facilitate working continuously between each procedure.
The utility model heats vacuum glass while vacuumizing, and simplifies production process, significantly shortens the production cycle of vacuum glass.
Accompanying drawing explanation
Fig. 1 is one of structural representation of the present utility model;
Fig. 2 is structural representation two of the present utility model;
Fig. 3 is the structural representation of casing in the utility model.
In figure: 1 lifting gear, 2 vacuum (-tight) housings, 3 balance weight assemblies, 4 upper heaters, 5 sealed strips, 6 casings, glass on 7,8 lower-glass, 9 worktable, 10 lifting devices, 11 times well heaters, 12 ceramic cushion blocks, 13 transport units.
Embodiment
Below in conjunction with specific embodiments and the drawings, the utility model is described further.
Embodiment one:
As shown in figures 1 and 3, produce vacuum glass vacuum extractor and comprise vacuum (-tight) housing 2 and casing 6; Vacuum (-tight) housing 2 is the inner cavity body of lower ending opening, and its inside arranges upper heater 4; Casing 6 is the inner cavity body of upper end open, and size, shape are all mated with vacuum (-tight) housing 2, is positioned at below vacuum (-tight) housing 2, and casing 6 inside arranges lower well heater 11.Upper heater 4 and lower well heater 11 can work simultaneously, ensure that inner glass is even, rapid heating.
Be provided with balance weight assembly 3 between vacuum (-tight) housing 2 and upper heater 4, balance weight assembly 3 top is connected with vacuum (-tight) housing 2, is connected bottom balance weight assembly 3 with upper heater 4.
Balance weight assembly 3 has two kinds of forms, one is balancing weight, by the gravity-pressing glass of balancing weight self, another kind of mode is the combination of balancing weight and stage clip, while utilizing balancing weight self gravitation pressed glass, utilize stage clip additionally to provide a pressure, balance weight assembly 3 can ensure glass by Effective Compaction in the process vacuumized, with the bonding efficiency of the fusion improving tackiness agent.
Further, balancing weight is insulating ceramic balancing weight.
Ceramic cushion block 12 is provided with between casing 6 and lower well heater 11.
Vacuum (-tight) housing 2 upper end is provided with lifting gear 1, and lifting gear 1 is connected with vacuum (-tight) housing 2, drives vacuum (-tight) housing 2 vertically to move, enters when this vacuumizes working district and fallen from top by vacuum (-tight) housing 2, cover on casing 6 at vacuum glass.
Vacuum (-tight) housing 2 or casing 6 cavity surrounding are provided with sealed strip 5, and sealed strip 5 is temperature resistant encapsulation bar.
Arrange transport unit 13 bottom casing 6, casing 6 can move horizontally along worktable 9, facilitates working continuously between each procedure.
After glass group completes operation in early stage, enter together with casing 6 and vacuumize operating area, after coming to a complete stop in location, vacuum (-tight) housing 2 puts down by lifting gear 1, upper heater 4 and balance weight assembly 3 cover on glass successively, and close contact, vacuum (-tight) housing 2 base contacts with casing 6 four limit and forms vacuum chamber, sealed by sealed strip 5, prevent gas leakage.Vacuum pump starts to vacuumize, upper heater 4 and lower well heater 11 start to be heated to certain temperature simultaneously, when after the vacuum tightness reaching setting in vacuum chamber, upper heater 4 and lower well heater 11 start second-heating simultaneously, after temperature step formula rises to design temperature, enter keeping warm mode, after soaking time arrives, upper heater 4 and lower well heater 11 stop heating, close vacuum pump as required, and open purging valve as required, after vacuum chamber inside and outside air pressure balance, lifting gear 1 is by vacuum (-tight) housing 2, upper heater 4 and balance weight assembly 3 are mentioned in the lump, casing 6 is taken glass group and is moved to subsequent processing operating area along worktable 9.Now go up glass 7 to bond with lower-glass 8, form vacuum glass.
Embodiment two:
As shown in Figures 2 and 3, produce vacuum glass vacuum extractor and comprise vacuum (-tight) housing 2 and casing 6; Vacuum (-tight) housing 2 is the inner cavity body of lower ending opening, and its inside arranges upper heater 4; Casing 6 is the inner cavity body of upper end open, and size, shape are all mated with vacuum (-tight) housing 2, is positioned at below vacuum (-tight) housing 2, and casing 6 inside arranges lower well heater 11.Upper heater 4 and lower well heater 11 can work simultaneously, ensure that inner glass is even, rapid heating.
Be provided with balance weight assembly 3 between vacuum (-tight) housing 2 and upper heater 4, balance weight assembly 3 top is connected with vacuum (-tight) housing 2, is connected bottom balance weight assembly 3 with upper heater 4.
Balance weight assembly 3 has two kinds of forms, one is balancing weight, by the gravity-pressing glass of balancing weight self, another kind of mode is the combination of balancing weight and stage clip, while utilizing balancing weight self gravitation pressed glass, utilize stage clip additionally to provide a pressure, balance weight assembly 3 can ensure glass by Effective Compaction in the process vacuumized, with the bonding efficiency of the fusion improving tackiness agent.
Further, balancing weight is insulating ceramic balancing weight.
Ceramic cushion block 12 is provided with between casing 6 and lower well heater 11.
Casing 6 lower end is provided with lifting device 10, and lifting device 10 is connected with casing 6, drives casing 6 vertically to move, and to enter when this vacuumizes working district by casing 6 from lower end jack-up, with vacuum (-tight) housing 2 contact seal at vacuum glass.
Vacuum (-tight) housing 2 or casing 6 cavity surrounding are provided with sealed strip 5, and sealed strip 5 is temperature resistant encapsulation bar.
Transport unit 13 is set bottom casing 6.
After glass group completes operation in early stage, enter together with casing 6 and vacuumize operating area, after coming to a complete stop in location, lifting device 10 is by casing 6 jack-up, upper heater 4 and balance weight assembly 3 cover on glass successively, and close contact, vacuum (-tight) housing 2 base contacts with casing 6 four limit and forms vacuum chamber, sealed by sealed strip 5, prevent gas leakage.Vacuum pump starts to vacuumize, upper heater 4 and lower well heater 11 start to be heated to certain temperature simultaneously, when after the vacuum tightness reaching setting in vacuum chamber, upper heater 4 and lower well heater 11 start second-heating simultaneously, after temperature step formula rises to design temperature, enter keeping warm mode, after soaking time arrives, upper heater 4 and lower well heater 11 stop heating, close vacuum pump as required, and open purging valve as required, after vacuum chamber inside and outside air pressure balance, lifting device 10 drives casing 6 to drop to original position, casing 6 is taken glass group and is moved to subsequent processing operating area along assigned direction.Now go up glass 7 to bond with lower-glass 8, form vacuum glass.
Above-described embodiment is only be described preferred implementation of the present utility model; not scope of the present utility model is limited; under the prerequisite not departing from the utility model design spirit; the various distortion that those of ordinary skill in the art make the technical solution of the utility model and improvement, all should fall in protection domain that the utility model claims determine.

Claims (8)

1. produce a vacuum glass vacuum extractor, it is characterized in that: comprise vacuum (-tight) housing (2) and casing (6); The inner cavity body that vacuum (-tight) housing (2) is lower ending opening, its inside arranges upper heater (4); The inner cavity body that casing (6) is upper end open, size is mated with vacuum (-tight) housing (2), and be positioned at vacuum (-tight) housing (2) below, casing (6) inside arranges lower well heater (11).
2. production vacuum glass vacuum extractor according to claim 1, it is characterized in that: between described vacuum (-tight) housing (2) and upper heater (4), be provided with balance weight assembly (3), balance weight assembly (3) top connects vacuum (-tight) housing (2), and bottom connects upper heater (4).
3. production vacuum glass vacuum extractor according to claim 2, is characterized in that: the combination that balance weight assembly (3) is balancing weight or balancing weight and stage clip.
4. production vacuum glass vacuum extractor according to claim 3, is characterized in that: be provided with ceramic insulating material between vacuum (-tight) housing (2) and upper heater (4).
5. production vacuum glass vacuum extractor according to claim 1, is characterized in that: be provided with insulating ceramic cushion block (12) between casing (6) and lower well heater (11).
6. production vacuum glass vacuum extractor according to claim 1, it is characterized in that: vacuum (-tight) housing (2) upper end is provided with lifting gear (1), lifting gear (1) is connected with vacuum (-tight) housing (2), drives vacuum (-tight) housing (2) vertically to move; Or casing (6) lower end is provided with lifting device (10), lifting device (10) is connected with casing (6), drives casing (6) vertically to move.
7. production vacuum glass vacuum extractor according to claim 1, is characterized in that: described vacuum (-tight) housing (2) or casing (6) cavity surrounding are provided with sealed strip (5).
8. production vacuum glass vacuum extractor according to claim 1, is characterized in that: casing (6) bottom arranges transport unit (13), and casing (6) can move horizontally along worktable (9).
CN201520873463.9U 2015-11-04 2015-11-04 Production evacuating device for vacuum glass Withdrawn - After Issue CN205152071U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201520873463.9U CN205152071U (en) 2015-11-04 2015-11-04 Production evacuating device for vacuum glass

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201520873463.9U CN205152071U (en) 2015-11-04 2015-11-04 Production evacuating device for vacuum glass

Publications (1)

Publication Number Publication Date
CN205152071U true CN205152071U (en) 2016-04-13

Family

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN201520873463.9U Withdrawn - After Issue CN205152071U (en) 2015-11-04 2015-11-04 Production evacuating device for vacuum glass

Country Status (1)

Country Link
CN (1) CN205152071U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105217970A (en) * 2015-11-04 2016-01-06 滕少波 Produce vacuum glass vacuum extractor

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105217970A (en) * 2015-11-04 2016-01-06 滕少波 Produce vacuum glass vacuum extractor
CN105217970B (en) * 2015-11-04 2018-07-10 滕少波 Produce vacuum glass vacuum extractor

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C14 Grant of patent or utility model
GR01 Patent grant
AV01 Patent right actively abandoned

Granted publication date: 20160413

Effective date of abandoning: 20180710

AV01 Patent right actively abandoned