EP1811114B2 - Coin entièrement en verre isolant - Google Patents

Coin entièrement en verre isolant Download PDF

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Publication number
EP1811114B2
EP1811114B2 EP07000659.8A EP07000659A EP1811114B2 EP 1811114 B2 EP1811114 B2 EP 1811114B2 EP 07000659 A EP07000659 A EP 07000659A EP 1811114 B2 EP1811114 B2 EP 1811114B2
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EP
European Patent Office
Prior art keywords
glass
insulating
corner
panes
insulating glass
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Active
Application number
EP07000659.8A
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German (de)
English (en)
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EP1811114B1 (fr
EP1811114A2 (fr
EP1811114A3 (fr
Inventor
Alfred Thiele
Wolfgang Immiger
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Thiele Glas GmbH
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Thiele Glas GmbH
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Publication of EP1811114A3 publication Critical patent/EP1811114A3/fr
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Classifications

    • EFIXED CONSTRUCTIONS
    • E06DOORS, WINDOWS, SHUTTERS, OR ROLLER BLINDS IN GENERAL; LADDERS
    • E06BFIXED OR MOVABLE CLOSURES FOR OPENINGS IN BUILDINGS, VEHICLES, FENCES OR LIKE ENCLOSURES IN GENERAL, e.g. DOORS, WINDOWS, BLINDS, GATES
    • E06B3/00Window sashes, door leaves, or like elements for closing wall or like openings; Layout of fixed or moving closures, e.g. windows in wall or like openings; Features of rigidly-mounted outer frames relating to the mounting of wing frames
    • E06B3/66Units comprising two or more parallel glass or like panes permanently secured together
    • E06B3/673Assembling the units
    • EFIXED CONSTRUCTIONS
    • E06DOORS, WINDOWS, SHUTTERS, OR ROLLER BLINDS IN GENERAL; LADDERS
    • E06BFIXED OR MOVABLE CLOSURES FOR OPENINGS IN BUILDINGS, VEHICLES, FENCES OR LIKE ENCLOSURES IN GENERAL, e.g. DOORS, WINDOWS, BLINDS, GATES
    • E06B3/00Window sashes, door leaves, or like elements for closing wall or like openings; Layout of fixed or moving closures, e.g. windows in wall or like openings; Features of rigidly-mounted outer frames relating to the mounting of wing frames
    • E06B3/66Units comprising two or more parallel glass or like panes permanently secured together
    • EFIXED CONSTRUCTIONS
    • E06DOORS, WINDOWS, SHUTTERS, OR ROLLER BLINDS IN GENERAL; LADDERS
    • E06BFIXED OR MOVABLE CLOSURES FOR OPENINGS IN BUILDINGS, VEHICLES, FENCES OR LIKE ENCLOSURES IN GENERAL, e.g. DOORS, WINDOWS, BLINDS, GATES
    • E06B1/00Border constructions of openings in walls, floors, or ceilings; Frames to be rigidly mounted in such openings
    • E06B1/04Frames for doors, windows, or the like to be fixed in openings
    • E06B1/36Frames uniquely adapted for windows
    • E06B1/363Bay windows

Definitions

  • the present invention relates to an all-glass corner made of insulating glass or an insulating glass corner for a glass facade of a building.
  • Building façades are often built completely from insulating glass, following the zeitgeist. For aesthetic reasons, you often do without corner profiles on building corners. Instead, one forms the corners of a building as Ganzglasecken of insulating glass or as Isolierglasecken, with insulating glasses are pushed directly into the building corners. Instead of corner profiles take over corner arranged point holder the task to remove horizontal and vertical loads in the substructure of the building. Architecturally, such all-glass corners offer not only an aesthetic value, which is due to an uninterrupted look in the building corners, but also a gain in light incidence.
  • insulating glass which are each made of two insulating glass symmetrical.
  • the two insulating glass are each designed with, for example, an outer glass pane which projects beyond an inner glass pane, which together with the outer glass pane and a spacer, for example made of aluminum, steel or stainless steel, with the two glass panes to form a gas with a either air or inert gas, such as argon, xenon or krypton-filled disc space is bonded, which forms insulating glass.
  • collided at a right angle to a corner assembly form the two insulating glasses at their butt ends a cavity which is necessarily sealed on both the inside and on the outside of the whole glass corner by means of a sealing arrangement to the effect of a heat bridge formed at the butt ends of the insulating glass to reduce. Due to the thermal bridge, condensation can form on the inside of the whole glass corner at low outside temperatures.
  • the sealed cavity ensures not only a thermal insulation but also a vapor pressure equalization from the inside to the outside of the whole glass corner to counteract condensation on the inside of the whole glass corner.
  • all-glass corners made of insulating glass which are each made symmetrical from two insulating glass, for example, form the inner glass sheets exclusively a fold.
  • an angled or round cover profile is connected to the outer glass panes of the insulating glass to form a heat-insulating cavity at the butt ends of the insulating glass analogous to the previously described all-glass corners.
  • all-glass corners made of insulating glass are known, which are each designed asymmetrically from two nested insulating glass.
  • one of the two insulating glasses can be designed such that, for example, an outer glass pane protrudes slightly more than the amount of the thickness of the other insulating glass over an inner glass, while the other insulating glass is designed with two equal length glass panes, so that the butt ends of the let both insulating glass into each other.
  • the two insulating glasses can be designed in each case with, for example, an outer glass pane projecting beyond an inner glass pane in order to be placed inside one another.
  • a sealed cavity is formed by the connection of the butt ends of the insulating.
  • Such intertwined Ganzglasecken represent common, glass technically simple solutions.
  • all-glass corners are physically difficult to treat as fundamentally problematic, since they represent thermal bridges whose effect can not be compensated despite the respective formation of a sealed cavity at the butt ends of two insulating glasses. Consequently, in the known all-glass corners must always be expected with a condensation on their inner sides.
  • the invention is therefore based on the object to provide a full glass corner of insulating glass, which better insulates heat in the area of the butt ends of their two insulating glass.
  • the invention is also based on the object of providing a glass blanket made of insulating glass which prevents condensation on the inside of the whole glass corner.
  • the invention has for its object to provide a full glass corner of insulating glass with respect to the known all-glass corners better Ganzglas character.
  • the invention has for its object to provide a full glass corner of insulating glass for a glass facade of a building.
  • the all-glass corner of insulating glass according to the invention comprises two Isolierglasmaschine collided at an angle and forming a corner assembly, each having at least two glass sheets, which are connected by means of spacer members to form a space filled with a gas disc space.
  • the two insulating glass parts collide in such a way that they are in the region of their butt ends form a continuous gas-filled disc space.
  • the glass façade according to the invention for a building comprises a multiplicity of the all-glass corners made of insulating glass according to the invention.
  • the glass panes are mitred at their butt ends.
  • the glass sheets are preferably reinforced in such a way that the ratio of miter depth to glass sheet thickness is less than or equal to a value of 2.
  • the abutting surfaces of the glass panes are each provided with a shoulder, so that the butt ends of the collided glass panes each form a fold, which is widened towards the space between the panes.
  • the spacer parts arranged between the glass panes are preferably connected to one another in a form-fitting manner by means of a spring-groove connection.
  • the spacer parts can also be glued or welded together at the butt ends of the two insulating glass parts.
  • the abutting surfaces of two collapsed glass sheets are connected to each other by means of a double-sided adhesive strip or a hot melt adhesive or a plastic strip with application of heat (Q) and pressure (P).
  • the adhesive strip is advantageously transparent.
  • Transparent means that the material of the adhesive tape is similar to glass in terms of light transmission, so that visible light penetrates the adhesive tape without being substantially absorbed by it.
  • the thickness of the adhesive strip is preferably 2 to 3 mm.
  • these abutting surfaces can also be glued together by means of a preferably neutral-crosslinking, one-component hot-melt adhesive, preferably based on silicone.
  • a preferably neutral-crosslinking, one-component hot-melt adhesive preferably based on silicone.
  • such an adhesive is injected into the folds formed by the butt ends of the two Isolierglasmaschine.
  • the thickness of the glass panes is preferably 3 to 19 mm, in particular 4 to 12 mm.
  • the glass panes of the two insulating glass parts are designed as tempered float glass or single-pane safety glass (ESG).
  • ESG single-pane safety glass
  • other types of glass such as laminated safety glass (VSG), laminated glass and the like, are conceivable as glass panes for the two insulating glass parts.
  • the folds formed on the inside and on the outside of the all-glass corner according to the invention by the butt ends of the glass panes are preferably sealed by means of silicone.
  • cover profiles are conceivable for sealing the folds.
  • the float glass panes 6a, 8a, 6b, 8b are mitred at their butt ends ( FIG. 2 ).
  • Each two collapsed float glass panes 6a, 8a, 6b, 8b are partially glued together at their abutment surfaces 18a, 18b, 20a, 20b by means of a transparent, adhesive adhesive tape 22,24 on both sides.
  • the spacer members 10a, 10b, 10c, 10d, 10e, 10f are positively connected and peripherally connected with respect to the corner assembly.
  • the spacer parts 10c, 10d and 10a, 10f are each plugged together in a form-fitting manner by means of a corner part.
  • the spacer members 10a, 10c, 10d, 10f are advantageously provided at their corner-side ends, each with a groove into which the corner part can be inserted.
  • the circumferential edge joint 14 formed in the connection of the float glass panes 6a, 8a, 6b, 8b to the spacer elements 10a, 10b, 10c, 10d, 10e, 10f is sealed by means of the usual sealant 16, so that the space between the panes 12a, 12b is sealed gas-tight.
  • the folds 26, 28 formed both on the inside and on the outside of the all-glass corner by the butt ends of the float glass panes 6a, 8a, 6b, 8b are each preferably sealed from the environment by means of a silicone layer 30, 32, around the insulating glass arrangement, the desired gas barrier, in particular to impart water vapor barrier on the outside to the folds 26, 28.
  • the adhesive strips 22, 24 are made of pure acrylate and have almost the same refractive index as glass. This material has an elongation at break according to DIN ISO 527-3 of more than 800% and a shear strength on steel in accordance with DIN EN 1939 of 30 N / 25 mm and can be used in a wider temperature range. Because of its high transparency and good adhesiveness to glass, it can be used excellently for gluing glass corners.
  • silicone layer 30, 32 the below-mentioned silicone-based hot melt adhesive is contemplated, so that reference is hereby made.
  • the insulating glass parts are arranged at a right angle to each other. This arrangement represents only one possibility of angular selection. However, the angle can be selected according to the intended use between 10 and 170 °, without departing from the inventive concept.
  • the mitred faces of the float glass sheets 6a, 8a, 6b, 8b are each slightly set so that the butt ends of the collapsed glass sheets 6a, 8a, 6b, 8b respectively form a fold 26, 28 which is widened toward the disk space 12a, 12b ,
  • These paragraphs serve to position the adhesive strips 22, 24 on the abutting surfaces of the float glass panes 6a, 8a, 6b, 8b.
  • the abutment surfaces 18a, 18b, 20a, 20b of the float glass panes 6a, 8a, 6b, 8b are not interconnected by means of a plurality of adhesive strips 23, 24 but by means of a preferably neutral-crosslinking, one-component hot-melt adhesive, preferably based on silicone glued, whereby the above-described bonding and sealing of the folds 26, 28 formed by the butt ends of the float glass panes 6a, 8a, 6b, 8b is replaced therewith by the adhesive strips 22, 24 and the silicone 30, 32, since the hot melt adhesive is the float glass panes 6a, 8a, 6b, 8b are not only glued together continuously, but at the same time the folds 26, 28 sealed.
  • This hot-melt adhesive in particular silicone-based, has the following properties: a viscosity at + 120 ° C of preferably 210,000cs, a processing time of preferably 15min, an initial strength after 15min of preferably 18psi, an initial strength after 60min of preferably 28psi, a Shore A hardness from 40 to 80, preferably 60, according to ASTM C 661 (ASTM: American Society for Testing and Materials), a minimum tensile strength of 0.3 to 0.4 MPa, preferably 0.35 MPa, according to ISO 8340, an elongation at break of 500 to 850% according to ISO 8340, a movement uptake of ⁇ 10 to ⁇ 25% according to ASTM C 719, an excellent weather resistance according to ASTM C 793, a specific gravity of 0.9 to 1.1 g / ml, preferably 1.051 g / ml and a temperature resistance of preferably -50 ° C to + 93 ° C, especially from -32 ° C to + 93 °
  • these adhesive systems are transparent, preferably crystal clear, so that the material of the adhesive is similar to glass in terms of light transmission, with visible light penetrating the adhesive without substantially being absorbed by it.
  • the hot-melt adhesive is applied in the liquid state to the abutment surfaces 18a, 18b, 20a, 20b of the float glass panes 6a, 8a, 6b, 8b at a processing temperature of 120 ° C., which corresponds to the melting temperature of the adhesive, or in the collapsed state of the float glass panes 6a, 8a, 6b, 8b defined in the folds 26, 28, in which this also remains after the abutting surfaces of the float glass panes 6a, 8a, 6b, 8b previously thoroughly cleaned and foreign matter and impurities such as grease, oil, dust, water and other contaminants have been removed.
  • the hot-melt adhesive reacts after solidification to a weather-resistant, flexible and permanently elastic material.
  • the abutment surfaces 18a, 18b, 20a, 20b of the float glass panes 6a, 8a, 6b, 8b are neither by means of adhesive tape nor by means of a hot melt adhesive, but by means of plastic strips 36 made of a thermoplastic such as EVA, polyvinyl butyral PVB, a thermoplastic polyester udgl. glued together using heat Q and pressure p ( FIG. 4 ), wherein these plastic strips 36 are non-adhesive as such in their initial state before the heat treatment of the float glass panes 6a, 8a, 6b, 8b.
  • a thermoplastic such as EVA, polyvinyl butyral PVB, a thermoplastic polyester udgl.
  • the float glass panes 6a, 8a, 6b, 8b are first glued together by means of these plastic strips 36 by means of heat treatment and subsequently further processed to form the all-glass corner according to the invention.
  • two float glass panes 6a, 8a, 6b, 8b to be glued together are placed in a metal mold, which in FIG. 4 is shown schematically in a sectional view together with the float glass panes 6a, 8a, 6b, 8b.
  • the parts 34 of the metal mold which carry the float glass panes 6a, 8a, 6b, 8b and which are in FIG. 4 are shown only partially, are preferably formed as ribs. These ribs 34 are arranged in such a way to each other that they give the metal mold a v-shape.
  • the metal mold has a multiplicity of such ribs 34 along its longitudinal axis-that is to say along an axis running perpendicular to the symmetry axis S of the metal mold and extending into the figure-plane.
  • the bearing surfaces 34a of the ribs 34 are preferably coated with Teflon.
  • two plates arranged in a V-shape relative to one another for receiving the float glass panes 6a, 8a, 6b, 8b are also conceivable.
  • a correspondingly cut plastic strip 36 is inserted into a preferably U-shaped holder 38 provided at the lower end 40 of the metal mold, so that the float glass panes 6a, 8a, 6b , 8b, after they have been inserted into the metal mold, due to their own weight along the support surfaces 34a of the ribs 34 slide down and thereby with a portion of their own weight on their abutment surfaces 18a, 18b, 20a, 20b against the plastic strip 36 and over Press this against each other.
  • this metal mold for bonding the float glass panes 6a, 8a, 6b, 8b is introduced into an autoclave or pressure vessel 42.
  • the float glass panes 6a, 8a, 6b, 8b are exposed to a temperature of about 130-140 ° C. and an internal pressure of about 20-25 bar over a period of about 4 hours.
  • the plastic strip 36 connects to the float glass panes 6a, 8a, 6b, 8b to form a highly transparent or crystal-clear unit.
  • the plastic of the plastic strip 36 protruding beyond the bonding at the connection point of the float glass panes 6a, 8a, 6b, 8b is removed.
  • This embodiment of the invention is characterized by a particularly high-strength and highly rigid adhesive bond of the float glass panes 6a, 8a, 6b, 8b.
  • this plastic based on a modified PVB has the following physical properties: property unit value ASTM test tensile modulus MPa (kpsi) 300 (43.5) D5026 tensile strenght MPa (kpsi) 34.5 (5.0) D638 strain % 400 D638 density g / cm 3 (lb / in 3 ) 0.95 (0.0343) D792 Flexural modulus 23 ° C (78 ° F) MPa (kpsi) 345 (50) D790 Heat resistance at 0.46 MPa ° C (° F) 43 (110) D648 Thermal expansion coefficient (-20 ° C to 32 ° C) - 10 - 15 x 10 -5 / ° C D696 ASTM: American Society for Testing and Materials

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  • Engineering & Computer Science (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Joining Of Glass To Other Materials (AREA)
  • Securing Of Glass Panes Or The Like (AREA)
  • Insulating Bodies (AREA)
  • Adhesives Or Adhesive Processes (AREA)

Claims (10)

  1. Angle tout en verre en verre isolant avec
    deux pièces (2,4) en verre isolant aboutées l'un à l'autre en formant une disposition en coin, qui comportent chacune au moins deux vitres en verre (6a, 8a, 6b, 8b), qui sont reliées à l'aide de pièces d'écartement (10a, 10b, 10c, 10d, 10e, 10f) en formant un espace (12a, 12b) inter-vitres rempli d'un gaz, les deux pièces (2, 4) en verre isolant étant aboutées de telle sorte que dans la région de leurs extrémités d'aboutage, elles forment un espace (12a, 12b) inter-vitres traversant rempli de gaz,
    caractérisé en ce que
    sur leurs extrémités d'aboutage, les vitres en verre (6a, 8a, 6b, 8b) sont réalisées en onglet et en ce que les surfaces d'aboutage (18a, 18b, 20a, 20b) de chaque fois deux vitres en verre (6a, 8a, 6b, 8b) aboutées sont reliées l'une à l'autre au moyen d'un ruban adhésif (22, 24) double face ou d'une colle thermofusible ou au moyen d'un ruban de matière plastique (36), avec apport de chaleur (Q) et de pression (p).
  2. Angle tout en verre en verre isolant selon la revendication 1,
    caractérisé en ce que les vitres en verre (6a, 8a, 6b, 8b) sont chaque fois assemblées par onglet de sorte que le rapport de la profondeur d'onglet à l'épaisseur de la vitre en verre soit inférieur ou égal à une valeur de 2.
  3. Angle tout en verre en verre isolant selon la revendication 1 ou la revendication 2,
    caractérisé en ce que les surfaces d'aboutage (18a, 18b, 20a, 20b) des vitres en verre (6a, 8a, 6b, 8b) forment chaque fois une contrefeuillure (26, 28) qui est élargie en direction de l'espace (12a, 12b) inter-vitres.
  4. Angle tout en verre en verre isolant selon l'une quelconque des revendications 1 à 3,
    caractérisé en ce que les pièces d'écartement (10a, 10c, 10d, 10f) sont reliées sur les extrémités d'aboutage des deux pièces (2,4) en verre isolant au moyen d'un assemblage par rainure et languette.
  5. Angle tout en verre en verre isolant selon la revendication 1,
    caractérisé en ce que les assemblages respectifs par collage sont conçus en étant transparents.
  6. Angle tout en verre en verre isolant selon l'une quelconque des revendications 1 à 5,
    caractérisé en ce que l'épaisseur du ruban adhésif (22, 24) est de 2 à 3 mm.
  7. Angle tout en verre en verre isolant selon l'une quelconque des revendications 1 à 6,
    caractérisé en ce que l'épaisseur de la vitre en verre est de 3 à 19 mm, notamment de 4 à 12 mm.
  8. Angle tout en verre en verre isolant selon l'une quelconque des revendications 1 à 7,
    caractérisé en ce que les vitres en verre (6a, 8a, 6b, 8b) sont conçues en tant que verre frotté précontraint.
  9. Angle tout en verre en verre isolant selon l'une quelconque des revendications 1 à 8,
    caractérisé en ce que les contrefeuillures (26, 28) formées par les extrémités d'aboutage des vitres en verre (6a, 8a, 6b, 8b) sont scellées sur la face intérieure et sur la face extérieure de l'angle tout en verre au moyen de silicone (30, 32).
  10. Façade en verre pour un bâtiment avec une pluralité d'angles tout en verre en verre isolant selon l'une quelconque des revendications 1 à 9.
EP07000659.8A 2006-01-19 2007-01-13 Coin entièrement en verre isolant Active EP1811114B2 (fr)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
DE102006002676A DE102006002676A1 (de) 2006-01-19 2006-01-19 Ganzglasecke aus Isolierglas

Publications (4)

Publication Number Publication Date
EP1811114A2 EP1811114A2 (fr) 2007-07-25
EP1811114A3 EP1811114A3 (fr) 2009-01-14
EP1811114B1 EP1811114B1 (fr) 2010-03-10
EP1811114B2 true EP1811114B2 (fr) 2016-06-01

Family

ID=37907317

Family Applications (1)

Application Number Title Priority Date Filing Date
EP07000659.8A Active EP1811114B2 (fr) 2006-01-19 2007-01-13 Coin entièrement en verre isolant

Country Status (5)

Country Link
EP (1) EP1811114B2 (fr)
AT (1) ATE460556T1 (fr)
DE (2) DE102006002676A1 (fr)
DK (1) DK1811114T4 (fr)
ES (1) ES2339880T5 (fr)

Families Citing this family (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE102009045443A1 (de) 2009-10-07 2011-04-14 Evonik Röhm Gmbh Flächiger, gewinkelter Formkörper aus Kunststoff und dessen Verwendung als Bauelement in Gebäuden und an Fassaden, vorzugsweise als Eckfenster
SE538162C2 (sv) * 2014-07-03 2016-03-22 Nordiska Balco Ab System för inglasade balkonger innefattande ett hörnelementoch ett första och andra sidoväggselement
WO2018028885A1 (fr) 2016-08-11 2018-02-15 Saint-Gobain Glass France Agencement d'angle pour élément de vitrage isolant, muni d'un film collé bord à bord
US10611095B2 (en) 2017-05-02 2020-04-07 Wood & Wood, Inc. Vitrine and method for making a vitrine
DE102018127210A1 (de) * 2018-10-31 2020-04-30 sedak GmbH & Co. KG Fassadenelement sowie Verfahren zur Herstellung eines Fassadenelements

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EP0061183A1 (fr) 1981-03-21 1982-09-29 Karl Lenhardt Procédé pour obtenir la connexion solide aux vitres isolantes
US5105591A (en) 1980-04-03 1992-04-21 Glass Equipment Development, Inc. Spacer frame for an insulating glass panel and method of making the same
JPH06256029A (ja) 1993-03-01 1994-09-13 Sun Tec Corp Kk 板ガラス成形体の製造法
JPH07180443A (ja) 1993-12-22 1995-07-18 Asahi Glass Co Ltd 複層曲げガラス及びこれを用いた出窓構造
US5508360A (en) 1995-03-31 1996-04-16 Dow Corning Corporation Moisture-curable hot melt silicone pressure-sensitive adhesives
GB2318148A (en) 1996-10-10 1998-04-15 Komfort Systems Ltd Double glazed partitioning system with support in the inter-pane gap
CN2484395Y (zh) 2001-05-28 2002-04-03 刘大成 多功能生态窗
JP2002114542A (ja) 2000-10-04 2002-04-16 Central Glass Co Ltd 複層ガラスの製造方法
WO2002060993A1 (fr) 2001-01-19 2002-08-08 Exxonmobil Chemical Patents Inc. Adhesifs thermofusibles
GB2401141A (en) 2003-05-02 2004-11-03 Komfort Office Environments Glazed wall assembly
US20070175120A1 (en) 2004-02-03 2007-08-02 Karl Lenhardt Insulating glass panel and method for producing the same

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE862947C (de) * 1951-08-29 1953-04-27 Gotthard Myrtha Kantenschutz fuer Ganzglasecken, insbesondere fuer Schaufenster
US5589248A (en) * 1992-09-18 1996-12-31 Suntec Corporation Shaped glass sheet and a process for the preparation thereof
DE10300389A1 (de) * 2003-01-09 2004-07-29 Saint-Gobain Glass Deutschland Gmbh Eckanordnung für Isolierglaselemente

Patent Citations (11)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5105591A (en) 1980-04-03 1992-04-21 Glass Equipment Development, Inc. Spacer frame for an insulating glass panel and method of making the same
EP0061183A1 (fr) 1981-03-21 1982-09-29 Karl Lenhardt Procédé pour obtenir la connexion solide aux vitres isolantes
JPH06256029A (ja) 1993-03-01 1994-09-13 Sun Tec Corp Kk 板ガラス成形体の製造法
JPH07180443A (ja) 1993-12-22 1995-07-18 Asahi Glass Co Ltd 複層曲げガラス及びこれを用いた出窓構造
US5508360A (en) 1995-03-31 1996-04-16 Dow Corning Corporation Moisture-curable hot melt silicone pressure-sensitive adhesives
GB2318148A (en) 1996-10-10 1998-04-15 Komfort Systems Ltd Double glazed partitioning system with support in the inter-pane gap
JP2002114542A (ja) 2000-10-04 2002-04-16 Central Glass Co Ltd 複層ガラスの製造方法
WO2002060993A1 (fr) 2001-01-19 2002-08-08 Exxonmobil Chemical Patents Inc. Adhesifs thermofusibles
CN2484395Y (zh) 2001-05-28 2002-04-03 刘大成 多功能生态窗
GB2401141A (en) 2003-05-02 2004-11-03 Komfort Office Environments Glazed wall assembly
US20070175120A1 (en) 2004-02-03 2007-08-02 Karl Lenhardt Insulating glass panel and method for producing the same

Also Published As

Publication number Publication date
DE102006002676A1 (de) 2007-08-02
DK1811114T4 (en) 2016-09-12
EP1811114B1 (fr) 2010-03-10
ES2339880T5 (es) 2016-11-10
EP1811114A2 (fr) 2007-07-25
DE502007003047D1 (de) 2010-04-22
ES2339880T3 (es) 2010-05-26
EP1811114A3 (fr) 2009-01-14
DK1811114T3 (da) 2010-05-10
ATE460556T1 (de) 2010-03-15

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