CN104291560A - Microwave-heated convex vacuum glass edge-sealed and port-sealed by using sealing strips, and preparation method thereof - Google Patents

Microwave-heated convex vacuum glass edge-sealed and port-sealed by using sealing strips, and preparation method thereof Download PDF

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Publication number
CN104291560A
CN104291560A CN201310298453.2A CN201310298453A CN104291560A CN 104291560 A CN104291560 A CN 104291560A CN 201310298453 A CN201310298453 A CN 201310298453A CN 104291560 A CN104291560 A CN 104291560A
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glass
vacuum
convex surface
sealed strip
bleeding point
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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

Abstract

The invention relates to microwave-heated convex vacuum glass which is edge-sealed and port-sealed by using sealing strips. The glass comprises upper glass and lower glass which are convex glass. An air-exhaust port is provided on the upper glass. At least one sealing strip is provided at each of the periphery of the upper glass and the periphery of the air-exhaust port. At least two sealing strips are provided at the periphery of the lower glass. At least one sealing strip is provided on the lower glass at the place corresponding to the air-exhaust port. The sealing strips on the upper glass are inserted in between or in the sealing strips on the lower glass. The peripheries of the upper glass and the lower glass are welded together by using a low-temperature glass solder under normal pressure in a microwave oven. The air-exhaust port is automatically sealed by using a metal solder in a vacuum furnace. The vacuum glass and the preparation method thereof have simple process. The prepared vacuum glass and tempered vacuum glass can overcome defects of prior arts. Air-tightness of the vacuum glass can be effectively ensured. Strength, thermal insulation performance and sound insulation performance of the glass can be enhanced.

Description

Convex surface vacuum glass of microwave heating sealed strip edge sealing sealing and preparation method thereof
Technical field
The present invention relates to glass post-processing technical field, particularly relate to convex surface vacuum glass of a kind of microwave heating sealed strip edge sealing sealing and preparation method thereof.
Background technology
Vacuum glass is a kind of novel energy-saving glass, and vacuum glass not only can solve " breathing " problem of the double glazing of existing a large amount of use, and has that heat-and sound-insulating performance is good, wind pressure resistant strength is high, thickness is little and the advantage such as long service life.Vacuum glass is generally made up of two to three sheet glass, and form cavity between two adjacent sheet glass, the periphery of glass is provided with edge sealing structure, cavity forms vacuum layer after being pumped into vacuum.Vacuum glass is according to the difference forming vacuum layer mode, can be divided into two kinds, a kind of is vacuum glass without bleeding point, and the edge sealing of this vacuum glass carries out in vacuum oven, along with completing of edge sealing, between two adjacent sheet glass the cavity self-assembling formation vacuum layer closed; Another kind is the vacuum glass having bleeding point, the edge sealing of this vacuum glass carries out in High Temperature Furnaces Heating Apparatus at ambient pressure, after edge sealing completes again by prefabricated bleeding point between glass the cavity closed vacuumize, finally terminate rear enclosed bleeding point bleeding, complete the making of vacuum glass.
A series of vacuum glass without bleeding point and preparation method thereof is disclosed in the patent of the vacuum glass that present invention applicant applied in March, 2012, but when utilizing low temperature glass solder edge sealing, because low temperature glass solder is made up of many oxide, at high temperature, under vacuum, the air of solder wettable and moisture, volatile substances in solder, in the gas that solder dissolves in process of production and solder, the decomposition etc. of partial oxide all can cause in solder and produce a large amount of bubbles, greatly weaken the properties especially resistance to air loss of solder, the feasibility of this kind of mode is caused to be greatly affected.The vacuum glass of existing mass production is all the vacuum glass having bleeding point, but there is complex manufacturing technology, extraction temperature low (bleeding not thorough), monolithic vacuumizes, cost is high, production capacity is low, can not make the shortcomings such as toughened vacuum glass.
Disclose vacuum glass of a series of microwave heating welding and preparation method thereof in the patent of the vacuum glass that present invention applicant applied in October, 2012, but easily there is the phenomenon of rarefied gas ionization sparking under vacuo in microwave heating.
Summary of the invention
Technical problem to be solved by this invention is the defect being to exist for existing bleeding point vacuum glass, convex surface vacuum glass providing a kind of microwave heating sealed strip edge sealing to seal and preparation method thereof, the making method technique of this vacuum glass is simple, prepared vacuum glass and toughened vacuum glass can overcome deficiency of the prior art, effectively can ensure resistance to air loss and the transparency of vacuum glass, and its intensity and heat insulation, sound-proofing properties can be increased.
In order to solve the problems of the technologies described above, the invention provides the convex surface vacuum glass of a kind of microwave heating sealed strip edge sealing sealing, comprise glass and lower-glass, described upper glass and described lower-glass are convex glasses, described upper glass there is bleeding point, the periphery of described upper glass and described bleeding point at least respectively has a sealed strip, the periphery of described lower-glass has at least two sealed strips, described lower-glass to have a sealed strip at least in the corresponding position of described bleeding point, between the sealed strip that the sealed strip of described upper glass inserts described lower-glass or within; The periphery of described upper glass and described lower-glass is by welding together in low temperature glass solder at ambient pressure microwave oven, described bleeding point utilizes brazing metal self-closed in vacuum oven, the vacuum layer that between described upper glass and described lower-glass, formation one is closed.
In order to solve the problems of the technologies described above, the invention provides the preparation method of convex surface vacuum glass or convex surface toughened vacuum glass, it comprises:
The first step, according to the shape of the convex surface vacuum glass of required making and two pieces of flat glasss up and down of size cutting desired size, makes bleeding point in the edge punching of upper glass, and carries out edging, chamfering, cleaning and drying treatment to upper and lower two blocks of glass;
Second step, sealed strip is prepared at the periphery of upper and lower glass and the periphery of bleeding point, the sealed strip of upper glass can insert in the sealed strip of the correspondence of lower-glass, upper lower-glass after process is loaded hot bending die, is placed in bending furnace or annealing furnace, be warming up to the temperature 550 ~ 750 DEG C of Glass Transition, rely on the gravity of glass self or externally applied forces to make glass form convex surface downwards, and be down to room temperature with stove, or directly carry out tempering process;
3rd step, by even spread low temperature glass solder between the sealed strip of lower-glass periphery, upper and lower glass is sent in microwave oven after closing sheet;
4th step, heat temperature raising operation is carried out to described microwave oven, be warming up to more than the melt temperature of low temperature glass solder, reach edge sealing temperature, the sealed strip of upper glass embeds between the sealed strip of lower-glass under the action of gravity of glass, and the low temperature glass solder of melting by upper and lower sealed strip by upper and lower two pieces of glass cementations together; Stop heating, with stove cooling, hermetic welded together by two blocks of glass after low temperature glass solder solidifies, the fire door opening microwave oven obtains double glazing;
5th step, loads brazing metal in the bleeding point of above-mentioned double glazing, and sends in vacuum oven; Described vacuum sole is vacuumized, limit heating, be evacuated to below 0.1Pa, be warming up to more than the temperature of fusion of brazing metal, brazing metal is fused into liquid, and liquid retention is in the sealed strip of lower-glass, the sealed strip of upper glass also floods in a liquid, and liquid is by bleeding point self-sealing; Stop heating, with stove cooling, brazing metal solidifies and realizes airtight sealing to bleeding point afterwards, opens vacuum oven, takes out convex surface vacuum glass;
6th step, puts into seal gum in the bleeding point of convex surface vacuum glass, Paste Product trade mark or metal decorative sheet on seal gum.
Wherein, described convex glass convex surface facing outside, convex surface bow is highly not less than 0.1mm, is preferably 1 ~ 200mm, more preferably 3 ~ 10mm.
Wherein, the periphery of described upper glass or the periphery of bleeding point are at least containing a sealed strip.
Wherein, the corresponding position of the bleeding point of the periphery of described lower-glass at least containing two sealed strips, described lower-glass is at least containing a sealed strip.
Wherein, the sealed strip of described upper glass is corresponding with the sealed strip of described lower-glass, between the sealed strip that the sealed strip of described upper glass can insert described lower-glass or within.
Wherein, described upper glass and described lower-glass are simple glass or toughened glass or semi-tempered glass.
Wherein, described upper glass and described lower-glass are simple glass or coated glass or Low-E glass.
Wherein, described sealed strip adopts printing, printing or mechanically spraying cryogenic glass powder or the mode such as glass ink or metal paste to prepare.
Wherein, can paint metals slurry between the sealed strip at described bleeding point place surface or sealed strip, metal paste contributes to combining closely of brazing metal and glass.
Wherein, described brazing metal comprises low-temperature metal solder and solder, and described material is existing commercial commodity.
Further, the fusing point of described brazing metal is lower than the fusing point of low temperature glass solder, and during brazing metal fusing, the low temperature glass solder of edge sealing remains unchanged.
Further, the shape of described brazing metal is powdery, strip, sheet or bulk, ring-type, tubulose etc.
Wherein, have metal paste coating between described brazing metal and described glass or described sealed strip, metal paste contributes to combining closely of brazing metal and glass.
Wherein, in the vacuum layer of described convex surface vacuum glass not or have a small amount of upholder, convex surface vacuum glass mainly relies on convex shape to resist barometric point.
Wherein, above support is made up of metal, pottery, glass or high molecular polymer, matrix material, preferably adopts printing, sprayed glass ink or polymkeric substance preparation.
Wherein, above support has one deck or two-layer; Above support is printed on one block of glass, or is printed on two blocks of glass, and conventional vacuum glass is preferably printed on one block of glass, and toughened vacuum glass is preferably 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.
Wherein, described microwave oven once can heat one to several piece convex surface vacuum glass.
Wherein, described microwave oven can have basic heating system and hot spot system, and basic heating system can adopt the mode of Hot-blast Heating or resistive heating as nichrome wire, electrothermal tube, hot plate etc. or inhale ripple heating element, and hot spot system adopts microwave heating;
Further, the heating of described basis, is that burner hearth or bulk glass are heated to a lower temperature, as 300 ~ 350 DEG C, toughened glass can not be caused obviously to anneal;
Further, described local heating is that solder or glass periphery are heated to a higher temperature, as 400 ~ 450 DEG C, prevents the overall obviously annealing of toughened glass;
Wherein, described in vacuumize and bleeding point sealing, can in vacuum oven batch carry out, also can monolithic implement; Overallly can heat glass, also can local heating bleeding point.
Wherein, described vacuum oven heating, can adopt conventional heating, Infrared Heating, also can adopt induction heating, LASER HEATING, can also adopt other suitable heating unit or heater meanses.
Further, described heating, can heat bulk glass, also can local heating bleeding point.
Wherein, described seal gum preferably has secret sealing, more preferably hot melt adhesive, hot-setting adhesive or two component sealing gum.
Beneficial effect of the present invention:
The convex surface vacuum glass of microwave heating sealed strip edge sealing of the present invention sealing on it periphery of glass and the periphery of bleeding point have sealed strip, also there is sealed strip the periphery of lower-glass and the corresponding position of bleeding point, make the edge sealing of convex surface vacuum glass and seal easier, more reliable, even if the sealed strip of upper glass ensure that the sealing effectiveness of convex surface vacuum glass when glass deformation with the chimeric of the sealed strip of lower-glass, there is between sealed strip and upper lower-glass the bonding strength higher than low temperature welding glass, the chimeric of the sealed strip of upper glass and the sealed strip of lower-glass increases sealing surface area between lower-glass and airtight layer thickness, the chimeric of the sealed strip of upper glass and the sealed strip of lower-glass achieves the automatic-sealed of bleeding point and mass seals, the advantage of microwave heating is that rate of heating is fast, cooling rate is fast, it is several times or tens times of conventional heating, can selectivity and inside and outside while homogeneous heating solder, solder and the sintering temperature that glassy phase weight/power ratio is minimum, microwave heating can reduce again solder, so energy consumption is low, thus microwave heating have energy-conservation, save time, high-quality, efficient advantage, microwave heating can promote the diffusion of molecule, so microwave heating can reduce sintering temperature or welding temperature, is more conducive to the welding of tempering or semi-tempered glass, microwave heating can make the temperature of temperature lower than solder of bulk glass, effectively can prevent the annealing of toughened glass in edge sealing process, so can direct production tempering or half tempered vacuum glass, in addition, microwave heating is that absorbing material directly generates heat, so be particularly suitable for heating low emissivity glass, under normal pressure, under low temperature glass solder edge sealing and vacuum, brazing metal sealing solves the airtight integrity problem of solder, add the tightness of vacuum layer between upper and lower glass, improve the life-span of vacuum glass, drastically increase the productivity of vacuum glass and qualification rate, reduce the production cost of vacuum glass.
Accompanying drawing explanation
Fig. 1 is the convex surface vacuum glass structural representation having upholder of the present invention;
Fig. 2 is convex surface vacuum glass structural representation of the present invention.
In figure: 1. go up glass, 2. lower-glass, 3. bleeding point, 4. low temperature glass solder, 5. go up the sealed strip of glass, 6. the sealed strip of lower-glass, 7. brazing metal, 8. upholder, 9. seal gum, 10. product brand.
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, convex surface vacuum glass is made up of upper glass 1 and lower-glass 2, and the periphery of two blocks of glass is welded together by low temperature glass solder 4, and centre is vacuum layer.Its making method is as follows: first according to the shape of made vacuum glass and two pieces of flat glasss of size cutting desired size, bore a through hole at the edge of upper glass 1 and form bleeding point 3, edging, chamfering and cleaning, drying are carried out to upper lower-glass, utilize mechanical spraying technology to prepare sealed strip 5 and 6 at the periphery weld of upper lower-glass and the periphery of bleeding point 3 and corresponding position, and on upper lower-glass, prepare upholder 8 with point gum machine; Secondly upper and lower two blocks of glass are loaded mould, are placed in bending furnace, be warming up to the temperature 550-750 DEG C of Glass Transition, rely on the gravity of glass self to make glass form convex surface downwards, be down to room temperature with stove, and by the method for plane lapping, upholder 8 be machined to same level height; Again by even spread low temperature glass solder 4 between two sealed strips 6 of lower-glass 2 periphery, and two pieces of glass consistencies from top to bottom are stacked together, send in microwave oven, be warming up to the melt temperature more than 450 DEG C of low temperature glass solder 4, stop heating, with stove cooling, two blocks of glass hermetic weld together by low temperature glass solder 4; Finally in bleeding point 3, load metallic zinc solder 7, send in vacuum oven, carry out vacuumizing and heating operation, be evacuated to below 0.1Pa, be warming up to the melt temperature more than 420 DEG C of metallic zinc solder 7, metallic zinc solder 7 is fused into liquid retention in sealed strip 6, sealed strip 5 also floods in a liquid, and liquid is by bleeding point self-sealing; Stop heating, with stove cooling, metallic zinc solder 7 condenses into solid, realizes airtight sealing to bleeding point, opens vacuum oven, takes out vacuum glass.Seal gum 9 is put into while hot as butyl rubber, the product brand 10 of covering above of seal gum 9, the upper surface flush of trade mark 10 and upper glass 1 in bleeding point.
Embodiment 2: see Fig. 2, convex surface vacuum glass is made up of upper glass 1 and lower-glass 2, two blocks of glass are toughened glass or semi-tempered glass, wherein one piece or low emissivity glass, its making method is as follows: first according to one piece of flat glass of the shape of made vacuum glass and size cutting desired size and one block of low emissivity glass and Low-E glass, by the weld membrane removal of low emissivity glass, boring a through hole at the edge of upper glass 1 is bleeding point 3, and edging is carried out to upper lower-glass, chamfering and cleaning, dry, screen printing technique is utilized to print sealed strip at the periphery weld of upper lower-glass and the periphery of bleeding point 3 and corresponding position, secondly two blocks of glass are respectively charged in two forming moulds, this forming mould has mold and bed die (i.e. formpiston and former), glass clamp is between mold and bed die, and can exert pressure make upper and lower mould close, the forming mould that glass is housed is warming up to the temperature 650-700 DEG C of Glass Transition, rely on the pressure put on forming mould to make the glass in forming mould form convex surface, remove mold immediately and carry out wind-cooling reinforcing, obtaining tempering or semi-tempered glass, again by even spread low temperature glass solder 4 between two sealed strips 6 of lower-glass 2 periphery, and two pieces of glass consistencies from top to bottom are stacked together, send in microwave oven, microwave oven has basic heating system and hot spot system, first utilize basic heating system as electric heater for heating, make basal temperature rise to 300 ~ 350 DEG C, low temperature glass solder is heated to melt temperature 430 ~ 450 DEG C by the microwave heating of recycling hot spot system, and the low temperature glass solder 4 of melting by two pieces of glass cementations together, stop heating, with stove cooling, two blocks of glass hermetic weld together by low temperature glass solder 4, finally carry out the sealing of bleeding point 3, with embodiment 1, just brazing metal 7 changes metallic tin into.
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, based on the amendment of foregoing, can 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. the convex surface vacuum glass of a microwave heating sealed strip edge sealing sealing, it is characterized in that: comprise glass and lower-glass, described upper glass and described lower-glass are convex glasses, described upper glass and described lower-glass are simple glass or toughened glass or semi-tempered glass, described upper glass there is bleeding point, the periphery of described upper glass and described bleeding point at least respectively has a sealed strip, the periphery of described lower-glass has two sealed strips at least, described lower-glass has a sealed strip at least in the corresponding position of described bleeding point, between the sealed strip that the sealed strip of described upper glass inserts described lower-glass or within, the periphery of described upper glass and described lower-glass is by welding together in low temperature glass solder at ambient pressure microwave oven, described bleeding point utilizes brazing metal self-closed in vacuum oven, described brazing metal comprises low-temperature metal solder and solder, the vacuum layer that between described upper glass and described lower-glass, formation one is closed.
2. convex surface vacuum glass according to claim 1, is characterized in that having one deck or two-layer upholder in described vacuum layer.
3. convex surface vacuum glass according to claim 1 and 2, is characterized in that described upper glass and described lower-glass are simple glass or coated glass or Low-E glass.
4. the convex surface vacuum glass according to any one of claims 1 to 3, is characterized in that the employing of described sealed strip is printed, print or prepared by the mode of mechanically spraying cryogenic glass powder or glass ink or metal paste.
5. the convex surface vacuum glass according to any one of Claims 1-4, it is characterized in that can paint metals slurry between the sealed strip surface at described bleeding point place or sealed strip, and metal paste contributes to combining closely of brazing metal and glass.
6. the convex surface vacuum glass according to any one of claim 1 to 5, it is characterized in that described convex glass convex surface facing outside, convex surface bow high be 3 ~ 10mm.
7. the preparation method of the convex surface vacuum glass described in any one of claim 1 to 6, is characterized in that: described convex surface vacuum glass is conventional vacuum glass or toughened vacuum glass, and preparation method is as follows:
The first step, according to the shape of the convex surface vacuum glass of required making and two pieces of flat glasss up and down of size cutting desired size, makes bleeding point in the edge punching of upper glass, and carries out edging, chamfering, cleaning and drying treatment to upper and lower two blocks of glass;
Second step, sealed strip is prepared at the periphery of upper and lower glass and the periphery of bleeding point, the sealed strip of upper glass can insert in the sealed strip of the correspondence of lower-glass, upper lower-glass after process is loaded hot bending die, is placed in bending furnace or annealing furnace, be warming up to the temperature 550 ~ 750 DEG C of Glass Transition, rely on the gravity of glass self or externally applied forces to make glass form convex surface downwards, and be down to room temperature with stove, or directly carry out tempering process;
3rd step, by even spread low temperature glass solder between the sealed strip of lower-glass periphery, upper and lower glass is sent in microwave oven after closing sheet;
4th step, heat temperature raising operation is carried out to described microwave oven, be warming up to more than the melt temperature of low temperature glass solder, reach edge sealing temperature, the sealed strip of upper glass embeds between the sealed strip of lower-glass under the action of gravity of glass, and the low temperature glass solder of melting by upper and lower sealed strip by upper and lower two pieces of glass cementations together; Stop heating, with stove cooling, hermetic welded together by two blocks of glass after low temperature glass solder solidifies, the fire door opening microwave oven obtains double glazing;
5th step, loads brazing metal in the bleeding point of above-mentioned double glazing, and sends in vacuum oven; Described vacuum sole is vacuumized, limit heating, be evacuated to below 0.1Pa, be warming up to more than the temperature of fusion of brazing metal, brazing metal is fused into liquid, and liquid retention is in the sealed strip of lower-glass, the sealed strip of upper glass also floods in a liquid, and liquid is by bleeding point self-sealing; Stop heating, with stove cooling, brazing metal solidifies and realizes airtight sealing to bleeding point afterwards, opens vacuum oven, takes out convex surface vacuum glass;
6th step, puts into seal gum in the bleeding point of convex surface vacuum glass, Paste Product trade mark or metal decorative sheet on seal gum.
8. the preparation method of convex surface vacuum glass according to claim 7, is characterized in that described microwave oven once can heat one to several piece convex surface vacuum glass.
9. the preparation method of convex surface vacuum glass according to claim 7, is characterized in that described microwave oven has basic heating system and hot spot system.
10. the preparation method of convex surface vacuum glass according to claim 9, it is characterized in that described basic heating system adopts one or several of Hot-blast Heating, resistive heating, Infrared Heating and far-infrared heating, described hot spot system adopts microwave heating.
CN201310298453.2A 2013-07-17 2013-07-17 Microwave-heated convex vacuum glass edge-sealed and port-sealed by using sealing strips, and preparation method thereof Withdrawn CN104291560A (en)

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CN201310298453.2A CN104291560A (en) 2013-07-17 2013-07-17 Microwave-heated convex vacuum glass edge-sealed and port-sealed by using sealing strips, and preparation method thereof

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Application Number Priority Date Filing Date Title
CN201310298453.2A CN104291560A (en) 2013-07-17 2013-07-17 Microwave-heated convex vacuum glass edge-sealed and port-sealed by using sealing strips, and preparation method thereof

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Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH0617579A (en) * 1992-04-06 1994-01-25 Kazuo Kuroiwa Vacuum thermal insulation sheet glass and manufacture thereof
CN1676481A (en) * 2004-04-01 2005-10-05 唐健正 vacuum glass edge heating method and vacuum glass made thereby
CN102951857A (en) * 2012-03-21 2013-03-06 戴长虹 Metal welding convex-surface toughened vacuum glass and manufacturing method thereof
CN102951814A (en) * 2012-10-06 2013-03-06 戴长虹 Convex low-altitude glass welded by metal solders and subjected to edge sealing by strip frame and groove, and manufacturing method of glass
CN102951789A (en) * 2012-03-21 2013-03-06 戴长虹 Flat tempered vacuum glass welded by metal and manufacturing method thereof
CN102951817A (en) * 2012-10-06 2013-03-06 戴长虹 Planar vacuum glass welded by glass solders in microwave manner and subjected to edge sealing by strip frames, and manufacturing method of glass
CN102951806A (en) * 2012-10-06 2013-03-06 戴长虹 Convex vacuum glass welded by glass solders in microwave manner and subjected to edge sealing by strip frames, and manufacturing method of glass

Patent Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH0617579A (en) * 1992-04-06 1994-01-25 Kazuo Kuroiwa Vacuum thermal insulation sheet glass and manufacture thereof
CN1676481A (en) * 2004-04-01 2005-10-05 唐健正 vacuum glass edge heating method and vacuum glass made thereby
CN102951857A (en) * 2012-03-21 2013-03-06 戴长虹 Metal welding convex-surface toughened vacuum glass and manufacturing method thereof
CN102951789A (en) * 2012-03-21 2013-03-06 戴长虹 Flat tempered vacuum glass welded by metal and manufacturing method thereof
CN102951814A (en) * 2012-10-06 2013-03-06 戴长虹 Convex low-altitude glass welded by metal solders and subjected to edge sealing by strip frame and groove, and manufacturing method of glass
CN102951817A (en) * 2012-10-06 2013-03-06 戴长虹 Planar vacuum glass welded by glass solders in microwave manner and subjected to edge sealing by strip frames, and manufacturing method of glass
CN102951806A (en) * 2012-10-06 2013-03-06 戴长虹 Convex vacuum glass welded by glass solders in microwave manner and subjected to edge sealing by strip frames, and manufacturing method of glass

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Application publication date: 20150121