EP0410927A1 - Multiple glazing - Google Patents

Multiple glazing Download PDF

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Publication number
EP0410927A1
EP0410927A1 EP90810499A EP90810499A EP0410927A1 EP 0410927 A1 EP0410927 A1 EP 0410927A1 EP 90810499 A EP90810499 A EP 90810499A EP 90810499 A EP90810499 A EP 90810499A EP 0410927 A1 EP0410927 A1 EP 0410927A1
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EP
European Patent Office
Prior art keywords
panes
composite window
elements
film
spring elements
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.)
Granted
Application number
EP90810499A
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German (de)
French (fr)
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EP0410927B1 (en
Inventor
Paul Grether
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Geilinger AG
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Geilinger AG
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Publication of EP0410927A1 publication Critical patent/EP0410927A1/en
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Publication of EP0410927B1 publication Critical patent/EP0410927B1/en
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    • 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
    • E06B3/67Units comprising two or more parallel glass or like panes permanently secured together characterised by additional arrangements or devices for heat or sound insulation or for controlled passage of light
    • E06B3/6715Units comprising two or more parallel glass or like panes permanently secured together characterised by additional arrangements or devices for heat or sound insulation or for controlled passage of light specially adapted for increased thermal insulation or for controlled passage of light

Definitions

  • the invention relates to a composite window with at least one insulating film between two panes, the plane of which is stretched biaxially in two directions parallel to the pane sides, the film edges being connected to sliding elements with sliding elements in the longitudinal direction by means of separate, separate adhesive points which are offset above the film plane the associated disc side are displaceable relative to the discs.
  • Laminated windows of the type mentioned above are known from CH-PS 653 404.
  • the film is stretched out over a frame which, in the untensioned state, is curved after a curve which is continuously curved on one side, for example according to the bending line of a uniformly loaded, non-clamped beam and is stretched to a straight rod by tensioning.
  • a high degree of machining accuracy is required in the production of the curved frame sides, as a result of which the production of the known composite window requires a high level of production expenditure.
  • the object of the invention is therefore to simplify the “tensioning system” for a film stretched out in a composite window and to reduce the production outlay for such a window.
  • Leaf-like springs made of spring band steel, which are supported directly on the disks, have proven useful as tension spring elements, and their tension force can be adjustable by changing their thicknesses and / or their web widths.
  • a band 5 of sliding elements On a strip of three spring elements 1 (FIG. 1), which are made of spring band steel and are connected to a continuous web 4 serving as a support on the surface 2 of a disk 3, is a band 5 of sliding elements, which is shown in two parts in the example shown 6 postponed. By mutual cuts 7 (Fig. 4) from both edges, the band 5 receives its longitudinal extensibility. The sections of the band 5 located between two incisions 7 from the same edge each form a sliding element 6. On each sliding element 6 there is an adhesion point 9 (FIG. 2) on which there is a transparent film 8 (FIG. 2), for example made of polyethylene terephthalate is attached. In order to achieve a smooth, biaxial tensioning of the film 8, the adhesion points 9 are offset from the plane of the film 8, so that the film 8 is pulled over a bead-like edge 10 of a sliding element 6.
  • a single spring element 1 has on one side of the web 4, almost perpendicular to it, a frame-like part 11, the free end of which is also angled almost at right angles and serves as a support for the sliding element 6.
  • a variation in the widths of the vertical sides of the "frame" 11 in FIG. 1 can be used to change the spring force of an element 1 within certain limits.
  • the ridge-like intermediate piece 12 On the other side of the web 4 there is first a ridge-like intermediate piece 12 to which an angle profile 13 connects. While the angle profile 13 - possibly after applying an intermediate layer, not shown, which compensates for different pane thicknesses, for example made of foam - forms the support of the spring element 1 on the pane 3, the ridge-like intermediate piece 12 is a support for a spacer 14 (FIG. 2 ), through which the panes 3 of the composite window are kept at a distance.
  • the spacer 14, which advantageously consists of plastic, contains several chambers 15, which can be filled with a desiccant 16.
  • the composite window is enclosed on the outside by an approximately 0.1 mm thick film 17 made of stainless steel, which is connected to the panes 3 by means of an elastic adhesive 18, for example made of polyurethane.
  • connection of a spring element 1 with a sliding element 6 or the spacer 14 takes place via elastically deformable tabs 19 or 20 which engage in corresponding cavities 21 or 22 of a sliding element 6 or the spacer 14.
  • the film 8 is tensioned with the aid of a special tensioning device, in which the tensioning points 9 are first tensioned in one direction and the tensioning points are "set" before the tensioning device is released. This process is then repeated in the direction of the other clamping axis.
  • the counterforce to the film tension is applied by the elastic spring force of the elements 1, in particular in the transition between the web 4 and the "frame" 11, so that it is not the material elasticity of the film material but the spring elasticity of the elements 1 that is decisive for the elasticity of the tensioning system .
  • the displaceability of the sliding elements 6 relative to the disks 3 to compensate for different thermal expansions is ensured by the extensibility of the belts 5 and / or by the possibility that the sliding elements 6 can slide on the spring elements 1.

Abstract

Eine zu den Scheiben (3) biaxial ausgespannte, transparente Folie (8) in einem Verbundfenster ist über eine Vielzahl einzelner Federelemente (1) direkt auf den Scheiben (3) abgestützt. Dadurch ergibt sich eine relativ einfache und einfach herzustellende Konstruktion.A transparent film (8) stretched biaxially to the panes (3) in a composite window is supported directly on the panes (3) via a large number of individual spring elements (1). This results in a relatively simple and easy to manufacture construction.

Description

Die Erfindung betrifft ein Verbundfenster mit mindestens einer Isola­tionsfolie zwischen zwei Scheiben, die in ihrer Ebene in zwei zu den Scheibenseiten parallelen Richtungen biaxial ausgespannt ist, wobei die Folienränder über voneinander getrennte, gebenüber der Folienebene ver­setzte, singuläre Haftstellen mit Gleitelementen verbunden sind, die in Längsrichtung der zugehörigen Scheibenseite relativ zu den Scheiben verschiebbar sind.The invention relates to a composite window with at least one insulating film between two panes, the plane of which is stretched biaxially in two directions parallel to the pane sides, the film edges being connected to sliding elements with sliding elements in the longitudinal direction by means of separate, separate adhesive points which are offset above the film plane the associated disc side are displaceable relative to the discs.

Verbundfenster der vorstehend genannten Art sind bekannt aus der CH-PS 653 404. Bei diesem bekannten Fenster wird die Folie über einen Rahmen ausgespannt, der im ungespannten Zustand nach einer einseitig stetig gekrümmten Kurve beispielsweise nach der Biegelinie eines gleichmässig belasteten, nicht eingespannten Trägers - gekrümmt ist und durch das Spannen zu einem geraden Stab gestreckt wird. Um eine Folie faltenfrei aufspannen zu können, ist eine hohe Bearbeitungsgenauigkeit bei der Herstellung der gekrümmten Rahmenseiten erforderlich, wodurch die Fertigung des bekannten Verbundfensters einen hohen Fabrikations­aufwand erfordert.Laminated windows of the type mentioned above are known from CH-PS 653 404. In this known window, the film is stretched out over a frame which, in the untensioned state, is curved after a curve which is continuously curved on one side, for example according to the bending line of a uniformly loaded, non-clamped beam and is stretched to a straight rod by tensioning. In order to be able to stretch a film without wrinkles, a high degree of machining accuracy is required in the production of the curved frame sides, as a result of which the production of the known composite window requires a high level of production expenditure.

Aufgabe der Erfindung ist es daher, das "Spannsystem" für eine in einem Verbundfenster ausgespannte Folie zu vereinfachen und den Fertigungs­aufwand für ein derartiges Fenster zu verringern.The object of the invention is therefore to simplify the “tensioning system” for a film stretched out in a composite window and to reduce the production outlay for such a window.

Diese Aufgabe wird mit der Erfindung dadurch gelöst, dass die Gleitele­mente über eine Vielzahl von Spannfederelementen an den Scheiben abge­stützt sind.This object is achieved with the invention in that the sliding elements are supported on the disks via a plurality of tension spring elements.

Bei der neuen Konstruktion entfällt damit der Spannrahmen mit seinen genau zu bearbeitenden gekrümmten Rahmenseiten.With the new design, the tenter frame with its precisely machined curved frame sides is no longer required.

Als Spannfederelemente haben sich blattartige Federn aus Federbandstahl bewährt, die sich direkt an den Scheiben abstützen, wobei ihre Spann­kraft durch Änderungen ihrer Dicken und/oder ihrer Stegbreiten ein­stellbar sein können.Leaf-like springs made of spring band steel, which are supported directly on the disks, have proven useful as tension spring elements, and their tension force can be adjustable by changing their thicknesses and / or their web widths.

Weiterhin ist es für die Fabrikation von Vorteil, wenn mehrere Gleit­elemente zu einem Band, und/oder wenn mehrere Federelemente zu einem Streifen zusammengefasst werden, wobei die Bänder der Gleitelemente, wie an sich aus der eingangs zitierten CH-PS bekannt, zwischen den singulären Haftstellen abwechselnd von beiden Rändern her mit Ein­schnitten versehen sind.Furthermore, it is advantageous for manufacturing if a plurality of sliding elements are combined into a band and / or if a plurality of spring elements are combined into a strip, the bands of the sliding elements, as is known per se from the CH-PS cited at the beginning, between the singular adhesive points are cut alternately from both edges.

Im folgenden wird die Erfindung anhand eines Ausführungsbeispiels im Zusammenhang mit der Zeichnung näher erläutert.

  • Fig. 1 zeigt in räumlicher, vergrösserter Darstellung einige Spannfederelemente im entspannten Zustand, auf die Gleitelemente aufgesetzt sind:
  • Fig. 2 gibt in einem Schnitt II-II von Fig. 3 den Rand des neuen Verbundfensters vergrössert wieder:
  • Fig. 3 ist ein Schnitt III-III von Fig. 2, während
  • Fig. 4 schliesslich den Schnitt IV-IV von Fig. 2 darstellt.
The invention is explained in more detail below using an exemplary embodiment in conjunction with the drawing.
  • 1 shows a spatial, enlarged representation of some tension spring elements in the relaxed state, on which sliding elements are placed:
  • FIG. 2 shows the edge of the new composite window enlarged in a section II-II of FIG. 3:
  • Fig. 3 is a section III-III of Fig. 2, while
  • Fig. 4 finally shows the section IV-IV of Fig. 2.

Auf einen Streifen aus drei Federelementen 1 (Fig. 1), die aus Feder­bandstahl hergestellt sind und an einem durchgehenden, als Auflage auf der Fläche 2 einer Scheibe 3 dienenden Steg 4 zusammenhängen, ist ein ­im gezeigten Beispiel nur zweigliedrig dargestelltes - Band 5 von Gleitelementen 6 aufgeschoben. Durch wechselseitige Einschnitte 7 (Fig. 4) von beiden Rändern her erhält das Band 5 seine Längsdehnbar­keit. Die zwischen zwei Einschnitten 7 vom gleichen Rand her gelegenen Abschnitte des Bandes 5 bilden dabei jeweils ein Gleitelement 6. Auf jedem Gleitelement 6 befindet sich eine Haftstelle 9 (FIG.2) an der eine transparente Folie 8 (FIG. 2), beispielsweise aus Polyethylen­terephthalat befestigt ist. Um ein glattes, biaxiales Spannen der Folie 8 zu erreichen, sind die Haftstellen 9 gegen die Ebene der Folie 8 ver­setzt, so dass diese über eine wulstartige Kante 10 eines Gleitelemen­tes 6 gezogen wird.On a strip of three spring elements 1 (FIG. 1), which are made of spring band steel and are connected to a continuous web 4 serving as a support on the surface 2 of a disk 3, is a band 5 of sliding elements, which is shown in two parts in the example shown 6 postponed. By mutual cuts 7 (Fig. 4) from both edges, the band 5 receives its longitudinal extensibility. The sections of the band 5 located between two incisions 7 from the same edge each form a sliding element 6. On each sliding element 6 there is an adhesion point 9 (FIG. 2) on which there is a transparent film 8 (FIG. 2), for example made of polyethylene terephthalate is attached. In order to achieve a smooth, biaxial tensioning of the film 8, the adhesion points 9 are offset from the plane of the film 8, so that the film 8 is pulled over a bead-like edge 10 of a sliding element 6.

Ein einzelnes Federelement 1 weist auf der einen Seite des Steges 4, nahezu senkrecht dazu stehend, einen rahmenartigen Teil 11 auf, dessen freies Ende ebenfalls nahezu rechtwinklig abgewinkelt ist und als Auf­lage für das Gleitelement 6 dient. Neben dem gewählten Material und der Dicke des Federelementes 1 kann eine Variation der Breiten der in Fig.1 vertikalen Seiten des "Rahmens" 11 dazu genutzt werden, die Federkraft eines Elementes 1 in gewissen Grenzen zu verändern.A single spring element 1 has on one side of the web 4, almost perpendicular to it, a frame-like part 11, the free end of which is also angled almost at right angles and serves as a support for the sliding element 6. In addition to the selected material and the thickness of the spring element 1, a variation in the widths of the vertical sides of the "frame" 11 in FIG. 1 can be used to change the spring force of an element 1 within certain limits.

Auf der anderen Seite des Steges 4 befindet sich zunächst ein dach­firstartiges Zwischenstück 12, an das ein Winkelprofil 13 anschliesst. Während das Winkelprofil 13 - unter Umständen nach Aufbringen einer, unterschiedliche Scheibendicken ausgleichenden, nicht gezeigten Zwi­schenschicht, beispielsweise aus Schaumstoff, - die Abstützung des Federelementes 1 an der Scheibe 3 bildet, ist das dachfirstartige Zwi­schenstück 12 ein Auflager für einen Abstandhalter 14 (Fig. 2), durch den die Scheiben 3 des Verbundfensters auf Abstand gehalten werden. Der Abstandshalter 14, der mit Vorteil aus Kunststoff besteht, enthält meh­rere Kammern 15, die mit einem Trockenmittel 16 gefüllt sein können.On the other side of the web 4 there is first a ridge-like intermediate piece 12 to which an angle profile 13 connects. While the angle profile 13 - possibly after applying an intermediate layer, not shown, which compensates for different pane thicknesses, for example made of foam - forms the support of the spring element 1 on the pane 3, the ridge-like intermediate piece 12 is a support for a spacer 14 (FIG. 2 ), through which the panes 3 of the composite window are kept at a distance. The spacer 14, which advantageously consists of plastic, contains several chambers 15, which can be filled with a desiccant 16.

Zum dampfdichten Abschluss seines Innenraumes wird das Verbundfenster aussen von einer, etwa 0,1 mm dicken Folie 17 aus rostfreiem Stahl umschlossen, die mit Hilfe einer elastischen Verklebung 18, beispiels­weise aus Polyurethan, mit den Scheiben 3 verbunden ist.To close its interior in a vapor-tight manner, the composite window is enclosed on the outside by an approximately 0.1 mm thick film 17 made of stainless steel, which is connected to the panes 3 by means of an elastic adhesive 18, for example made of polyurethane.

Die Verbindung eines Federelementes 1 mit einem Gleitelement 6 bzw. dem Abstandshalter 14 erfolgt über elastisch verformbare Lappen 19 bzw. 20, die in entsprechende Hohlräume 21 bzw. 22 eines Gleitelementes 6 bzw. des Abstandshalters 14 eingreifen.The connection of a spring element 1 with a sliding element 6 or the spacer 14 takes place via elastically deformable tabs 19 or 20 which engage in corresponding cavities 21 or 22 of a sliding element 6 or the spacer 14.

Das Spannen der Folie 8 erfolgt mit Hilfe einer besonderen Spannein­richtung, in der zunächst in der einen Richtung gespannt und unter Spannung die Haftstellen 9 "gesetzt" werden, ehe die Spanneinrichtung gelöst wird. Dieser Ablauf wird dann in Richtung der anderen Spannachse wiederholt.The film 8 is tensioned with the aid of a special tensioning device, in which the tensioning points 9 are first tensioned in one direction and the tensioning points are "set" before the tensioning device is released. This process is then repeated in the direction of the other clamping axis.

Die Gegenkraft zur Folienspannung wird durch die elastische Federkraft der Elemente 1, insbesondere im Übergang zwischen dem Steg 4 und dem "Rahmen" 11, aufgebracht, so dass für die Elastizität des Spannsystems nicht die Materialelastizität des Folienmaterials, sondern die Feder­elastizität der Elemente 1 massgebend ist.The counterforce to the film tension is applied by the elastic spring force of the elements 1, in particular in the transition between the web 4 and the "frame" 11, so that it is not the material elasticity of the film material but the spring elasticity of the elements 1 that is decisive for the elasticity of the tensioning system .

Die Verschiebbarkeit der Gleitelemente 6 relativ zu den Scheiben 3 zum Ausgleich unterschiedlicher Wärmedehnungen ist sichergestellt durch die Dehnbarkeit der Bänder 5 und/oder durch die Möglichkeit, dass die Gleitelemente 6 auf den Federelementen 1 gleiten können.The displaceability of the sliding elements 6 relative to the disks 3 to compensate for different thermal expansions is ensured by the extensibility of the belts 5 and / or by the possibility that the sliding elements 6 can slide on the spring elements 1.

Claims (5)

1. Verbundfenster mit mindestens einer Isolationsfolie (8) zwischen zwei Scheiben (3), die in ihrer Ebene in zwei zu den Scheibenseiten parallelen Richtungen biaxial ausgespannt ist, wobei die Folienrän­der über voneinander getrennte, gebenüber der Folienebene versetzte, singuläre Haftstellen (9) mit Gleitelementen (6) verbunden sind, die in Längsrichtung der zugehörigen Scheibenseite relativ zu den Scheiben (3) verschiebbar sind, dadurch gekennzeichnet, dass die Gleitelemente (6) über eine Vielzahl von Spannfederelementen (1) an den Scheiben (3) abgestützt sind.1. Composite window with at least one insulation film (8) between two panes (3), which is stretched biaxially in its plane in two directions parallel to the pane sides, the film edges also having separate, separate adhesion points (9) offset from one another and offset above the film plane Sliding elements (6) are connected, which are displaceable in the longitudinal direction of the associated pane side relative to the panes (3), characterized in that the sliding elements (6) are supported on the panes (3) by a plurality of tension spring elements (1). 2. Verbundfenster nach Anspruch 1, dadurch gekennzeichnet, dass die Spannfederelemente (1) blattartige Federn aus Federbandstahl sind, die direkt an den Scheiben (3) abgestützt sind.2. Composite window according to claim 1, characterized in that the tension spring elements (1) are leaf-like springs made of spring band steel, which are supported directly on the panes (3). 3. Verbundfenster nach Anspruch 1 oder 2, dadurch gekennzeichnet, dass die Spannkraft der Federelemente (1) durch Änderungen ihrer Dicken und/oder ihrer Stegbreiten (11) einstellbar ist.3. Composite window according to claim 1 or 2, characterized in that the clamping force of the spring elements (1) can be adjusted by changing their thicknesses and / or their web widths (11). 4. Verbundfenster nach einem der Ansprüche 1 bis 3, dadurch gekenn­zeichnet, dass mehrere Gleitelemente (6) zu Bändern (5) zusammen­gefasst sind, die zwischen den Haftstellen (9) abwechselnd von bei­den Rändern her mit Einsrhnitten (7) versehen sind.4. Composite window according to one of claims 1 to 3, characterized in that a plurality of sliding elements (6) are combined to form strips (5) which are provided with recesses (7) alternately from the two edges between the adhesion points (9). 5. Verbundfenster nach einem der Ansprüche 1 bis 4, dadurch gekenn­zeichnet, dass mehrere Federelemente (1) zu Streifen zusammenge­fasst sind.5. Composite window according to one of claims 1 to 4, characterized in that several spring elements (1) are combined into strips.
EP90810499A 1989-07-26 1990-07-03 Multiple glazing Expired - Lifetime EP0410927B1 (en)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CH2786/89A CH679322A5 (en) 1989-07-26 1989-07-26
CH786/89 1989-07-26

Publications (2)

Publication Number Publication Date
EP0410927A1 true EP0410927A1 (en) 1991-01-30
EP0410927B1 EP0410927B1 (en) 1993-04-14

Family

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Family Applications (1)

Application Number Title Priority Date Filing Date
EP90810499A Expired - Lifetime EP0410927B1 (en) 1989-07-26 1990-07-03 Multiple glazing

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US (1) US5048258A (en)
EP (1) EP0410927B1 (en)
CA (1) CA1326170C (en)
CH (1) CH679322A5 (en)
DE (1) DE59001196D1 (en)

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP2412910A2 (en) 2010-07-27 2012-02-01 IFN-Holding AG Method for producing a multi-pane insulating glass element
EP2412909A2 (en) 2010-07-27 2012-02-01 IFN-Holding AG Method for producing a multi-pane insulating glass element
EP2415958A2 (en) 2010-07-27 2012-02-08 IFN-Holding AG Method for producing a multi-pane insulating glass element

Families Citing this family (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20090133341A1 (en) * 2007-11-26 2009-05-28 Kontos Nicholas G Window insulation apparatus and method of attaching
DE102009051319A1 (en) * 2009-10-29 2011-02-10 Rosenheimer Glastechnik Gmbh Glass composite pane for use as multi-pane insulation glass in window frame, has spacer arranged between glass panes and formed from composite, which comprises profile elements arranged next to each other and fastened to one another
US9234381B2 (en) 2013-01-07 2016-01-12 WexEnergy LLC Supplemental window for fenestration
US10196850B2 (en) 2013-01-07 2019-02-05 WexEnergy LLC Frameless supplemental window for fenestration
US9691163B2 (en) 2013-01-07 2017-06-27 Wexenergy Innovations Llc System and method of measuring distances related to an object utilizing ancillary objects
US9845636B2 (en) 2013-01-07 2017-12-19 WexEnergy LLC Frameless supplemental window for fenestration
US9663983B2 (en) 2013-01-07 2017-05-30 WexEnergy LLC Frameless supplemental window for fenestration incorporating infiltration blockers
WO2018222467A1 (en) 2017-05-30 2018-12-06 WexEnergy LLC Frameless supplemental window for fenestration

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US2915793A (en) * 1957-02-19 1959-12-08 Reflectal Corp Combined window and screen assembly
BE867627A (en) * 1978-05-30 1978-09-18 Trolle Sten MULTI-GLASS WINDOW KIT
WO1981001950A1 (en) * 1980-01-14 1981-07-23 Minnesota Mining & Mfg Window structure for supporting a sheet of polymeric film
EP0069837A2 (en) * 1981-07-14 1983-01-19 GebràœDer Sulzer Aktiengesellschaft Self-supporting insulating element

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US3008196A (en) * 1958-01-27 1961-11-14 Ira H Springer Multiple glass structural unit and method of making the same
CH636402A5 (en) * 1978-11-17 1983-05-31 Sulzer Ag INSULATION ELEMENT BETWEEN THE WINDOWS OF A COMPOSITE WINDOW.
EP0034813B1 (en) * 1980-02-20 1985-10-09 Teijin Limited Structure of multilayered unit for windows
US4468905A (en) * 1982-05-24 1984-09-04 Capitol Products Corporation Insulated glass spacer

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2915793A (en) * 1957-02-19 1959-12-08 Reflectal Corp Combined window and screen assembly
BE867627A (en) * 1978-05-30 1978-09-18 Trolle Sten MULTI-GLASS WINDOW KIT
WO1981001950A1 (en) * 1980-01-14 1981-07-23 Minnesota Mining & Mfg Window structure for supporting a sheet of polymeric film
EP0069837A2 (en) * 1981-07-14 1983-01-19 GebràœDer Sulzer Aktiengesellschaft Self-supporting insulating element

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP2412910A2 (en) 2010-07-27 2012-02-01 IFN-Holding AG Method for producing a multi-pane insulating glass element
EP2412909A2 (en) 2010-07-27 2012-02-01 IFN-Holding AG Method for producing a multi-pane insulating glass element
EP2415958A2 (en) 2010-07-27 2012-02-08 IFN-Holding AG Method for producing a multi-pane insulating glass element

Also Published As

Publication number Publication date
DE59001196D1 (en) 1993-05-19
EP0410927B1 (en) 1993-04-14
CA1326170C (en) 1994-01-18
US5048258A (en) 1991-09-17
CH679322A5 (en) 1992-01-31

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