CN104291662A - Flat tempered vacuum glass welded by glass solder and edge-sealed through groove - Google Patents

Flat tempered vacuum glass welded by glass solder and edge-sealed through groove Download PDF

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Publication number
CN104291662A
CN104291662A CN201310298915.0A CN201310298915A CN104291662A CN 104291662 A CN104291662 A CN 104291662A CN 201310298915 A CN201310298915 A CN 201310298915A CN 104291662 A CN104291662 A CN 104291662A
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glass
vacuum
toughened
performed polymer
edge sealing
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戴长虹
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02PCLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
    • Y02P40/00Technologies relating to the processing of minerals
    • Y02P40/50Glass production, e.g. reusing waste heat during processing or shaping
    • Y02P40/57Improving the yield, e-g- reduction of reject rates

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Abstract

A flat tempered vacuum glass welded by a glass solder and edge-sealed through a groove is composed of an upper glass and a lower glass and is characterized in that a periphery of the upper glass is provided with an edge-sealing bar frame and the periphery of the lower glass is provided with an edge-sealing groove. The peripheries of the upper glass and the lower glass are welded to each other through the glass solder. A sealed vacuum layer, with a supporting object therein, is formed between the upper glass and the lower glass, wherein the supporting object includes one layer or two layers. The edge-sealing bar frame and the supporting object are manufactured from tempered glass printing ink and a high polymer in a composite manner. The high polymer is firstly prepared into a pre-polymer. The pre-polymer, after the glass being tempered, is manufactured on the tempered glass printing ink. Finally the pre-polymer is solidified to form an elastomer at room temperature or a high temperature. The pre-polymer or the elastomer can automatically adapt with change of height of the vacuum layer. Volatile gas in the elastomer is exhausted from the elastomer at a high temperature and a high vacuum degree. The method is easy to mechanize and automate and can be used for manufacturing the tempered vacuum glass with high performance and low cost in large scale.

Description

The plane toughened vacuum glass of glass solder welding, groove edge sealing
Technical field
The present invention relates to the processing and manufacturing of vacuum glass, making method of especially a kind of toughened vacuum glass and products thereof.
Background technology
Vacuum glass is a kind of novel energy-saving and environmental protection product, can be widely used in the industrial or agricultural field such as buildings and car and boat door and window, glass curtain wall, solar product, agricultural greenhouse, refrigerator and refrigerator and resident's daily living article, be excellent heat insulation, sound insulation and finishing material.
Though vacuum glass is one of best energy-conserving product, but is never applied on a large scale for over ten years, its reason has be the complex manufacturing of existing vacuum glass, production cost high at three: one, and cause market value high, user is difficult to bear; Two is be difficult to mechanize, automatic production, and production capacity is low, is difficult to meet the requirement that user supplies in time; Three is to produce toughened vacuum glass, makes the range of application of vacuum glass restricted greatly.
Applicant of the present invention utilizes the method arranging edge band frame at glass periphery to overcome main drawback in existing vacuum glass edge sealing technique in March, 2012 and application in October a series of are about the patent of vacuum glass, and propose the making method of toughened vacuum glass, but its weak point is that to utilize the edge band frame of toughened glass printing ink to manufacture to reach required its difficulty of height larger, its reason one is that glass is non-hygroscopic, be difficult to make higher edge band frame and upholder, two edge band frames when being glass temperings and upholder at high temperature melt, it reduces highly further.
Summary of the invention
For prior art Problems existing, the object of the present invention is to provide a kind of toughened vacuum glass and preparation method thereof, not only manufacture craft is simple, cost is low for the method, production efficiency is high, and sealing-in is reliable, good sealing effect, utilize the method single stage method, in enormous quantities preparation can there is no the toughened vacuum glass of bleeding point.
In order to solve the problems of the technologies described above, the invention provides a kind of toughened vacuum glass, it comprises glass, lower-glass, described upper glass and described lower-glass are flat glasss, described upper glass and described lower-glass are common toughened glass or coated toughened glass, the periphery of described upper glass has edge band frame, the periphery of described lower-glass has edge sealing groove, the periphery of described upper glass and described lower-glass is welded together by glass solder, the vacuum layer that between described upper glass and described lower-glass, formation one is closed, upholder is had in described vacuum layer, above support has one deck or two-layer, described edge band frame and/or upholder are made up of toughened glass ink and/or superpolymer, described superpolymer first makes performed polymer, again described performed polymer is prepared on described glass or described toughened glass ink after glass tempering, described performed polymer is solidified into elastomerics at ambient temperature or elevated temperature, described performed polymer or elastomerics can adapt to the change of described vacuum layer height automatically, and described elastomerics gets rid of the volatile gases contained by self under high temperature, high vacuum.
In order to solve the problems of the technologies described above, the invention provides a kind of making method of toughened vacuum glass, it comprises:
The first step, according to the shape of the toughened vacuum glass of required making and two blocks of sheet glass of size cutting desired size, offers edge sealing groove at the periphery weld of lower-glass, and carries out edging, chamfering, cleaning and drying treatment to upper and lower two blocks of glass;
Second step, with toughened glass ink for raw material, at the periphery weld of upper glass by printing, to print or the mode of mechanically spraying makes edge band frame, at least one block of glass makes upholder, and enables the edge band frame of glass be embedded in the edge sealing groove of lower-glass; Then after drying, tempering process is carried out under the same conditions by two pieces of glass feeding annealing furnaces;
3rd step, selects suitable polymer monomer, first monomer whose is become the performed polymer of setting viscosity through preliminary polymerization, is then produced on toughened glass ink or upper lower-glass by performed polymer by printing, printing or the mode of mechanically spraying; Performed polymer can at room temperature be solidified into elastomerics, elastomerics by catalyzer in vacuum glass edge sealing process, be heated to the irregular change that elastomeric state adapts to vacuum layer height automatically before glass closes sheet; Performed polymer also automatically can adapt to after glass closes sheet vacuum layer height irregular change, again by hot setting elastomer-forming;
4th step, edge sealing groove and or edge band frame place are printed or sprayed glass solder, or directly in edge sealing groove, load glass solder, and by described two blocks of glass forward consistency from top to bottom be stacked together, leave bleed-off passage between two glass, then send in vacuum edge sealing stove;
5th step, vacuumizes and heating operation described vacuum edge sealing stove, first by after basic heating system heats to basal temperature, is evacuated to below 0.1Pa, restarts hot spot system; After reaching edge sealing temperature, glass solder is fused into liquid, and under the effect of glass self gravitation, edge band frame embeds in edge sealing groove; Stop heating, with stove cooling, two blocks of glass hermetic weld together by glass solder, and the fire door opening vacuum edge sealing stove obtains required toughened vacuum glass.
Wherein, the periphery of described upper glass is at least containing an edge band frame, and the periphery of described lower-glass is at least containing an edge sealing groove, and described edge band frame is inserted in edge sealing groove.
Wherein, described toughened vacuum glass can also comprise one block of intermediate glass, and described intermediate glass is clipped between described upper glass and described lower-glass, and described upper glass and described lower-glass form two closed vacuum layer respectively with described intermediate glass.
Wherein, above support is printed on one block of glass, or is printed on two blocks of glass.
Wherein, above support is column, or is strip; When upholder is printed on one block of glass, preferably cylindric; When upholder is printed on two blocks of glass simultaneously, be preferably strip, and vertical pile; When upholder is printed on two blocks of glass simultaneously, both can have toughened glass ink and superpolymer simultaneously, can one piece be also toughened glass ink, another block was superpolymer.
Wherein, above support and edge band frame through printing, to print or prepared by the mode of mechanically spraying.
Wherein, above support and edge band frame can be combined by described toughened glass ink and described superpolymer, also can be made separately by described toughened glass ink or described superpolymer.
Wherein, described upper glass and described lower-glass carry out tempering at identical conditions, make it have identical or close deformation quantity.
Wherein, forward stack when described upper glass and described lower-glass close sheet, its deformation is matched.
Wherein, described toughened glass ink preferably transparent or translucent.
Wherein, described superpolymer is high molecular polymer, preferred heterogeneous chain polymer and elemento-organic polymer.
Wherein, described superpolymer preferably transparent or translucent polymkeric substance, as polyimide, polyacrylonitrile and organosilicon etc.
Wherein, described resistant to elevated temperatures superpolymer keeps shape invariance, the polymkeric substance of chemical transformation does not occur, as polymeric amide, polyimide, polyacrylonitrile and organosilicon etc. under referring to the temperature more than 160 DEG C.
Wherein, described high temperature refers to 160-460 DEG C, preferred 260-360 DEG C.
Wherein, described performed polymer refers to the polymkeric substance that a kind of molecular weight of the polymerization degree between monomer and final polymkeric substance is lower, preferably has certain viscosity and is suitable for printing, prints or the viscous body of mechanically spraying.
Wherein, catalyzer, linking agent or coupling agent etc. can be had in described performed polymer, mineral filler or metal-powder etc. can also be had, to promote the crosslinked of described performed polymer or increase described elastomeric elasticity, hardness and improve temperature tolerance and weldability etc.
Wherein, the viscous body that described performed polymer is formed through printing, printing or mechanically spraying, it keeps shape invariance, under external force shape to change under self gravitation.
Wherein, described automatic adaptation refers to that glass closes its height of described performed polymer be clipped between two sheet glass after sheet and can be compressed into the height of place vacuum layer, described automatic adaptation also can refer to glass close sheet after the described elastomerics be clipped between two sheet glass when at high temperature becoming elastomeric state its height under the gravity or the gravity of self of upper glass, compressed or be stretched to the height of place vacuum layer.
Wherein, described elastomerics refer to described performed polymer catalyzer or and temperature effect under its molecule crosslinked or cyclization and final polymkeric substance of high elastic coefficient of obtaining further.
Wherein, described high vacuum refers to that vacuum tightness is at 0.1-0.001Pa.
Wherein, described volatile gases refers to that described performed polymer is at the moisture, the catalyzer added or other small-molecule substance that are cross-linked or produce in cyclization process.
Wherein, described vacuum edge sealing stove is normal reheating furnace, by electric heating element heat temperature raising, comprises batch kiln and continuous furnace.
Wherein, described vacuum edge sealing stove can a sealing-in one piece of vacuum glass at every turn, also can sealing-in polylith vacuum glass, namely realizes the mass production of vacuum glass.
Wherein, described vacuum edge sealing stove and accessory has basic heating system and hot spot system, basis heating system can adopt the mode of resistive heating as nichrome wire, electrothermal tube, hot plate etc., or adopts the mode of circulating air heating, by vacuum edge sealing furnace interior and glass heats to basal temperature; Recycling hot spot system carries out local heating as modes such as resistive heating, infrared heating, LASER HEATING, Electromagnetic Heating, microwave heatings to the periphery of glass and edge sealing position, reaches the object at short notice glass solder being heated to melting.Described basic Heating temperature range preferably from 280 ~ 350 DEG C, described local heating temperature range preferably from 380 ~ 450 DEG C.
The invention has the beneficial effects as follows:
Toughened glass ink and superpolymer are combined by the present invention, not only effectively can improve the height of upholder and edge band frame, and can keep the height of upholder and edge band frame; The present invention can adjust the viscosity of performed polymer easily by the molecular weight of adjustment performed polymer, thus utilizes printing, to print or the mode such as mechanically spraying realizes low-costly and in high volume, upholder and edge band frame are prepared in mechanize, automatization; The present invention is by performed polymer deformability at normal temperatures and elastomerics deformability at high temperature, make upholder and edge band frame automatically can adapt to the irregular change of vacuum layer height, eliminate the impact of toughened glass planeness, thus realize the effective support to toughened vacuum glass, make the scale operation of toughened vacuum glass become possibility; The present invention can make performed polymer solidify under specified requirements by selecting suitable catalyzer or temperature, edge band frame and upholder is not only made to be easy to make, be convenient to obtain relative high height, and upholder can be made to have suitable elasticity, greatly can reduce the stress that glass bears compared with rigid support thing, thus reduce the breakage rate of glass, the qualification rate improving vacuum glass and life-span; Superpolymer has extremely low thermal conductivity, has higher sonic transmissions loss compared with rigid material compared with metallic substance, so the vacuum glass made with this upholder has better heat insulation and sound-proofing properties; High temperature required in vacuum glass edge sealing process and high vacuum, not only can make superpolymer complete volatile gases that is crosslinked but also that can get rid of contained by superpolymer, makes upholder and edge band frame can not emission gases again in the use procedure of vacuum glass; And high upholder can make that vacuum layer thickens, space is strengthened, be not only conducive to obtaining high vacuum, but also be conducive to keeping high vacuum; Toughened vacuum glass of the present invention, structure is simple, safe and reliable, convenient for production, with low cost, can mass, mechanization production, greatly can improve production efficiency and qualification rate, the reduction production cost of toughened vacuum glass.
Accompanying drawing explanation
Fig. 1 is the structural representation of toughened vacuum glass of the present invention;
Fig. 2 is the structural representation of of the present invention pair of vacuum layer toughened vacuum glass.
In figure: 1. go up glass, 2. lower-glass, 3. superpolymer, 4. toughened glass ink, 5. glass solder, 6. intermediate glass.
Embodiment
Below adopt embodiment and accompanying drawing to describe embodiments of the present invention in detail, to the present invention, how utilisation technology means solve technical problem whereby, and the implementation procedure reaching technique effect can fully understand and implement according to this.
Embodiment 1: see Fig. 1, toughened vacuum glass is made up of upper and lower two blocks of toughened glass or semi-tempered glass, wherein one piece or low emissivity glass, its making method is as follows: first according to one flat plate glass and one block of low emissivity glass of the shape of made vacuum glass and size cutting desired size, edge sealing groove is offered at the periphery weld of lower-glass, and carry out edging, chamfering and cleaning, dry, upper glass utilize silk screen printing toughened glass ink is made edge band frame and upholder, wherein go up glass and have an edge band frame, lower-glass has an edge sealing groove, after upper lower-glass closes sheet, the edge band frame of upper glass can be embedded in the edge sealing groove of lower-glass, secondly two blocks of glass are sent into annealing furnace, carried out tempering process at identical conditions, under high temperature action, toughened glass ink is together with glass sintering, carry out wind-cooling reinforcing immediately, obtain tempering or semi-tempered glass, the height after toughened glass ink sintering is probably 0.05-0.1mm, prepare superpolymer, superpolymer is polyimide simultaneously, first with pyromellitic acid dianhydride and aromatic diamines for raw material, in dimethyl sulfoxide (DMSO) equal solvent, preliminary polymerization becomes performed polymer, makes performed polymer have suitable viscosity by the adjustment polymerization degree, then by performed polymer by printing, to print or the mode of mechanically spraying is produced on the toughened glass ink of upper glass, the height of performed polymer is advisable with 0.5-1mm, when upper glass and lower-glass close sheet, edge can arrange positioning element to control the thickness of vacuum layer, upper glass and lower-glass forward after mounted on top conjunction sheet performed polymer the mutability of own form can be utilized automatically to adapt to the change of vacuum layer height between glass and lower-glass, again fill glass solder by the edge sealing groove of lower-glass, two pieces of glass consistencies from top to bottom are forward stacked together, reserve certain bleed-off passage, send in vacuum edge sealing stove, finally carry out heating and vacuum pumping, basic heating system such as electrothermal tube is first utilized to heat, make basal temperature rise to more than 300 DEG C, the molecule of performed polymer cyclization gradually in the process, dehydrating and curing elastomer-forming, realize the powerful support to upper glass and lower-glass, then be evacuated to below 0.1Pa, make the vacuum tightness that vacuum layer reaches required, elastomerics gets rid of the whole volatile gaseses contained by self gradually under high temperature, high vacuum simultaneously, in the use procedure of vacuum glass, phenomenon of deflation occurs to avoid elastomerics, glass solder is heated to melt temperature more than 430 DEG C by recycling hot spot system such as infrared heater, glass solder melts, the edge band frame of upper glass embeds in the edge sealing groove of lower-glass under gravity, and the glass solder of melting by two pieces of glass cementations together, stop heating, with stove cooling, two blocks of glass hermetic weld together by glass solder, open fire door and obtain required toughened vacuum glass.
Embodiment 2: see Fig. 2, two vacuum layer toughened vacuum glass is made up of upper, middle and lower three blocks of toughened glass or semi-tempered glass, wherein intermediate glass or low emissivity glass, its making method is as follows: first according to two blocks of sheet glass and one block of low emissivity glass of the shape of made vacuum glass and size cutting desired size, edge sealing groove is offered at the upper surface periphery of lower-glass and intermediate glass, and edging is carried out to three blocks of glass, chamfering and cleaning, dry, utilize printing technology that toughened glass ink is printed to edge band frame at upper glass and intermediate glass lower surface periphery, on upper glass and intermediate glass, print upholder simultaneously, wherein go up glass and have an edge band frame, the upper surface of intermediate glass has an edge sealing groove, lower surface has an edge band frame, lower-glass has an edge sealing groove, after upper, middle and lower glass closes sheet, edge band frame above can be embedded in edge sealing groove below, secondly send in annealing furnaces by three blocks of glass, carry out tempering process at identical conditions and make it have identical or approximate deformation quantity, under high temperature action, toughened glass ink is together with glassy bond, obtains tempering or semi-tempered glass, again make silicone elastomer, with METHYL TRICHLORO SILANE, phenyl-trichloro-silicane etc. for main raw material, add two functionality monomer such as dimethyldichlorosilane(DMCS), dichloromethyl phenylsilane, above-mentioned monomer is hydrolyzed in a solvent, polycondensation, eccysis byproduct hydrogen chloride, obtain still containing the resin liquid of a small amount of silicone hydroxyl, add a small amount of catalyzer if cobalt naphthenate etc. is as performed polymer using this resin liquid, then by performed polymer by printing, to print or the mode of mechanically spraying is produced on toughened glass ink, performed polymer solidify to form certain intensity and hardness gradually subsequently, evenly load glass solder by the edge sealing groove of intermediate glass and lower-glass, and by three blocks of glass forward mounted on top together, retain certain bleed-off passage, send in vacuum edge sealing stove, finally carry out heating and vacuum pumping, basic heating system such as circulating air is first utilized to heat, make basal temperature rise to more than 300 DEG C, in the process the further polycondensation of the molecule of performed polymer completely, obtain the three-dimensional netted elastomerics that is cross-linked, realize the powerful support to upper glass and lower-glass, then be evacuated to below 0.1Pa, make the vacuum tightness that vacuum layer reaches required, elastomerics gets rid of the whole volatile gaseses contained by self gradually under high temperature, high vacuum simultaneously, in the use procedure of vacuum glass, phenomenon of deflation occurs to avoid elastomerics, utilize hot spot system such as infrared heater that glass solder is heated to melt temperature more than 400 DEG C, edge band frame above embeds in edge sealing groove below under gravity, and the glass solder of melting by three pieces of glass cementations together, stop heating, with stove cooling, three blocks of glass hermetic weld together by glass solder, open fire door and obtain required toughened vacuum glass.
All above-mentioned this intellecture properties of primary enforcement, not setting restriction this product innovation of other forms of enforcement and/or novel method.Those skilled in the art will utilize this important information, and foregoing is revised, to realize similar implementation status.But all modifications or transformation belong to the right of reservation based on product innovation of the present invention.
The above is only preferred embodiment of the present invention, and be not restriction the present invention being made to other form, any those skilled in the art may utilize the technology contents of above-mentioned announcement to be changed or be modified as the Equivalent embodiments of equivalent variations.But everyly do not depart from technical solution of the present invention content, any simple modification, equivalent variations and the remodeling done above embodiment according to technical spirit of the present invention, still belong to the protection domain of technical solution of the present invention.

Claims (10)

1. a glass solder welding, the plane toughened vacuum glass of groove edge sealing, it is characterized in that comprising glass, lower-glass, described upper glass and described lower-glass are flat glasss, described upper glass and described lower-glass are common toughened glass or coated toughened glass, the periphery of described upper glass has edge band frame, the periphery of described lower-glass has edge sealing groove, the periphery of described upper glass and described lower-glass is welded together by glass solder, the vacuum layer that between described upper glass and described lower-glass, formation one is closed, upholder is had in described vacuum layer, above support has one deck or two-layer, described edge band frame and/or upholder are made up of toughened glass ink and/or superpolymer, described superpolymer first makes performed polymer, again described performed polymer is prepared on described glass or described toughened glass ink after glass tempering, described performed polymer is solidified into elastomerics at ambient temperature or elevated temperature, described performed polymer or elastomerics can adapt to the change of described vacuum layer height automatically, and described elastomerics gets rid of the volatile gases contained by self under high temperature, high vacuum.
2. plane toughened vacuum glass according to claim 1, it is characterized in that described vacuum glass also comprises one block of intermediate glass, described intermediate glass is clipped between described upper glass and described lower-glass, and described upper glass and described lower-glass form two closed vacuum layer respectively with described intermediate glass.
3. plane toughened vacuum glass according to claim 1 and 2, is characterized in that described performed polymer has certain viscosity to be suitable for printing, to print or liquid polymer that the molecular weight of mechanically spraying is lower.
4. the plane toughened vacuum glass according to any one of claims 1 to 3, it is characterized in that can having catalyzer, linking agent or coupling agent in described performed polymer, mineral filler or metal-powder can also be had, to promote the crosslinked of described performed polymer or increase elasticity, the hardness of above support and improve temperature tolerance.
5. plane toughened vacuum glass according to claim 1, it is characterized in that described automatic adaptation refers to that glass closes its height of described performed polymer be clipped between two sheet glass after sheet and can be compressed into the height of place vacuum layer, described automatic adaptation or refer to glass close sheet after the described elastomerics be clipped between two sheet glass when at high temperature becoming elastomeric state its height under the gravity or the gravity of self of upper glass, compressed or be stretched to the height of place vacuum layer.
6. plane toughened vacuum glass according to claim 1, is characterized in that described elastomerics refers to described performed polymer its molecule crosslinked or cyclization and final polymkeric substance of high elastic coefficient of obtaining further under the effect of catalyzer Huo and temperature.
7. plane toughened vacuum glass according to claim 1, is characterized in that described volatile gases refers to that described performed polymer is at the moisture, the catalyzer added or other small-molecule substances that are cross-linked or produce in cyclization process.
8. the plane toughened vacuum glass according to any one of claim 1 to 7, is characterized in that described upper glass and described lower-glass carry out tempering process at identical conditions, makes it have identical or close deformation quantity.
9. the plane toughened vacuum glass according to any one of claim 1 to 7, forward stacks when it is characterized in that described upper glass and described lower-glass close sheet, its deformation is matched.
10. the making method of the plane toughened vacuum glass described in any one of claim 1 to 9, is characterized in that comprising the following steps:
The first step, according to the shape of the vacuum glass of required making and two blocks of sheet glass of size cutting desired size, offers edge sealing groove at the periphery weld of lower-glass, and carries out edging, chamfering, cleaning and drying treatment to upper and lower two blocks of glass;
Second step, with toughened glass ink for raw material, prints edge band frame at the periphery weld of upper glass, upholder is printed by least one block of glass, and enables the edge band frame of glass be embedded in the edge sealing groove of lower-glass; Then after drying, tempering process is carried out by two pieces of glass feeding annealing furnaces;
3rd step, selects suitable polymer monomer, first monomer whose is become the performed polymer of setting viscosity through preliminary polymerization, is then produced on toughened glass ink or upper lower-glass by performed polymer by printing, printing or the mode of mechanically spraying; Flexible support can by catalyzer, at room temperature curing elastomer, elastomerics be heated to the irregular change that elastomeric state adapts to vacuum layer height automatically in vacuum glass edge sealing process before glass closes sheet; Flexible support also automatically can adapt to after glass closes sheet vacuum layer height irregular change, become elastic supporter by hot setting again;
4th step, prints edge band frame and edge sealing groove place or sprayed glass solder, or directly in edge sealing groove, loads glass solder, and be stacked together by described two pieces of glass consistencies from top to bottom, leave bleed-off passage between two glass, then sends in vacuum edge sealing stove;
5th step, vacuumizes and heating operation described vacuum edge sealing stove, first by after basic heating system heats to basal temperature, restarts hot spot system; Reach edge sealing temperature, glass solder is fused into liquid, and under the effect of glass self gravitation, edge band frame embeds in edge sealing groove; Stop heating, with stove cooling, two blocks of glass hermetic weld together by glass solder, and the fire door opening vacuum edge sealing stove obtains required toughened vacuum glass.
CN201310298915.0A 2013-07-17 2013-07-17 Flat tempered vacuum glass welded by glass solder and edge-sealed through groove Withdrawn CN104291662A (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110845156A (en) * 2019-11-22 2020-02-28 江苏繁华玻璃股份有限公司 Vacuum glass and manufacturing method thereof

Citations (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4198254A (en) * 1976-11-26 1980-04-15 Bfg Glassgroup Vitreous sheets with synthetic polymer spacer and process for making the same
EP0283971A2 (en) * 1987-03-25 1988-09-28 Ppg Industries, Inc. Improved multiple pane unit having a flexible spacing and sealing assembly
JPH10297944A (en) * 1997-04-24 1998-11-10 Central Glass Co Ltd Plural layer glass panel
JP2000027546A (en) * 1998-07-09 2000-01-25 Nippon Electric Glass Co Ltd Mounting structure of glass block panel
CN2648023Y (en) * 2003-10-23 2004-10-13 张煊 Vacuum glass with flexible support elastic sealing
CN2747220Y (en) * 2004-11-29 2005-12-21 张煊 Flexible supporting type vacuum glass
CN101042041A (en) * 2007-03-21 2007-09-26 王汉清 Suspending and balancing pressure type support safety vacuum glass
CN102951824A (en) * 2012-10-06 2013-03-06 戴长虹 Glass solder-microwave welded and groove-edge-sealed planar vacuum glass and manufacturing method thereof

Patent Citations (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4198254A (en) * 1976-11-26 1980-04-15 Bfg Glassgroup Vitreous sheets with synthetic polymer spacer and process for making the same
EP0283971A2 (en) * 1987-03-25 1988-09-28 Ppg Industries, Inc. Improved multiple pane unit having a flexible spacing and sealing assembly
JPH10297944A (en) * 1997-04-24 1998-11-10 Central Glass Co Ltd Plural layer glass panel
JP2000027546A (en) * 1998-07-09 2000-01-25 Nippon Electric Glass Co Ltd Mounting structure of glass block panel
CN2648023Y (en) * 2003-10-23 2004-10-13 张煊 Vacuum glass with flexible support elastic sealing
CN2747220Y (en) * 2004-11-29 2005-12-21 张煊 Flexible supporting type vacuum glass
CN101042041A (en) * 2007-03-21 2007-09-26 王汉清 Suspending and balancing pressure type support safety vacuum glass
CN102951824A (en) * 2012-10-06 2013-03-06 戴长虹 Glass solder-microwave welded and groove-edge-sealed planar vacuum glass and manufacturing method thereof

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110845156A (en) * 2019-11-22 2020-02-28 江苏繁华玻璃股份有限公司 Vacuum glass and manufacturing method thereof

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