E06B3/66342

Insulating glazing and method for producing same

An insulating glazing includes a first a second pane, a spacer between the first and second pane that is fixedly connected to the first and second pane in a water-vapor-tight manner in each case, which spacer has two parallel pane contact walls, an outer wall, and a glazing interior wall and an interior, and a water-tight sealant strip running around the outer wall between the first and second pane. A pressure-equalizing element is inserted into the sealant strip and the spacer, which pressure-equalizing element is open to the surrounding atmosphere and to the interior of the spacer or to the glazing interior between the first and the second pane and is implemented such that it provides a gas connection having a pressure-equalizing function between the atmosphere and the interior of the spacer or the glazing interior which gas connection is temporally limited due to aging and/or atmospheric influences.

GLASS PANEL UNIT, METHOD FOR MANUFACTURING GLASS PANEL UNIT, COMPOSITE GETTER MATERIAL, AND GETTER PASTE

A method for manufacturing a glass panel unit includes a working step, an assembling step, a bonding step, and a gas exhausting step. The working step includes a getter material making step including obtaining a getter material containing a zeolite and a cerium compound. The assembling step includes preparing an assembly. The bonding step includes melting a peripheral wall to hermetically bond a first glass pane and a second glass pane. The gas exhausting step includes exhausting a gas from an internal space through an exhaust port to turn the internal space into a vacuum space.

Multi-Pane Insulating Glass Unit Having a Rigid Frame for a Third Pane and Method of Making the Same
20220259918 · 2022-08-18 ·

An insulating glass unit and a method of forming same comprising a pair of glass panes in a parallel, spaced apart relation, at least one edge spacer and at least a primary sealant7 glass panes, said at least one transparent film secured to one of a support structure and the at least one edge spacer, wherein the film is positioned in a spaced apart parallel relationship between the pair of glass panes, and wherein the film is heat shrunk to a tensioned state prior to positioning of the film between the pair of glass panes.

Method for manufacturing glass panel, and glass panel

An object is to enable sealing of a peripheral portion of a glass panel with less effort and time. A first metal introduction device 5A is moved from one first corner A at which two sides intersect each other of a pair of rectangular glass plates, toward another end of a first side Vab of the two sides, while performing filling with a metal material. Before the metal material filling the first corner A is solidified, a second metal introduction device 5B is moved from the first corner A toward another end of another second side Vad, while performing filling with a metal material. After the first side Vab and the second side Vad are filled with the metal material, both glass plates are rotated by 180 degrees, and the first metal introduction device 5A is moved toward another end of a fourth side Vcd of two sides intersecting each other at a second corner C diagonal to the first corner A, while performing filling with a metal material. Before the metal material filling the second corner C is solidified, the second metal introduction device 5B is moved from the second corner C toward another end of another third side Vbc, while performing filling with a metal material.

Method for manufacturing glass panel unit

A first substrate, having an evacuation port, and a second substrate are bonded together with a first sealing material in a frame shape interposed between them to create an internal space. The internal space is evacuated through the evacuation port, and the evacuation port is sealed up with the internal space kept evacuated. At this time, a second sealing material inserted into the evacuation port is heated and melted while being pressed toward the second substrate such that the evacuation port is sealed up with the second sealing material melted. The evacuation port and the second sealing material have dissimilar shapes when viewed along the center axis of the evacuation port in a state where the second sealing material has been inserted into the evacuation port but has not melted yet.

Low Thermal Conducting Spacer Assembly for an Insulating Glazing Unit
20210324676 · 2021-10-21 ·

A spacer for an insulated glazing unit (IGU) is provided herein, along with an IGU and methods of making the spacer and IGU. The spacer imparts high thermal insulation to the IGU. Also provided are methods of preparing an insulating glazing unit, as well as methods of preparing a spacer for an IGU.

INSULATING GLAZING AND USE THEREOF
20210285278 · 2021-09-16 ·

An insulating glazing having a pressure-equalizing body, includes a first pane, a second pane, a peripheral spacer between the first pane and the second pane, wherein the spacer includes a hollow main body having at least two parallel pane contact walls, an outer wall, and a glazing interior wall and a bore opening through the outer wall and contains a desiccant arranged in the hollow main body. The hollow main body extends between the first and second panes along a periphery and, along this periphery, a partition wall extends through the hollow main body transversely to the periphery. An inner interpane space is formed between the first pane, the second pane, and the spacer, and a hollow pressure-equalizing body for pressure equalization between the inner interpane space and the surroundings of the insulating glazing. The pressure-equalizing body includes a surrounding outer wall and a gas-permeable membrane.

METHOD FOR MANUFACTURING GLASS PANEL UNIT

A method for manufacturing a glass panel unit includes a glue arrangement step, an assembly forming step, a first melting step, an evacuation step, and a second melting step. The first melting step includes melting a hot glue, bonding a first and second panel with the glue, and forming an internal space. The first melting step includes a first temperature raising step, a first temperature maintaining step including maintaining the temperature of the assembly at a temperature equal to or higher than a softening point of the hot glue, and a first temperature lowering step, which are performed in this order. The first temperature lowering step includes: an anterior temperature lowering step including lowering the temperature of the assembly; a middle temperature maintaining step including maintaining the temperature of the assembly; and a posterior temperature lowering step including lowering the temperature of the assembly, which are performed in this order.

WINDOW ASSEMBLY FOR MITIGATING FLUID INGRESS
20210222480 · 2021-07-22 · ·

A window assembly for mitigating fluid ingress between adjacent frame members is disclosed. The assembly has a first frame member of a first frame, and a second frame member of a second frame. The first frame member includes a seal-receiving channel first counterpart, and the second frame member includes a seal-receiving channel second counterpart. The first and second frame members are co-operatively configured such that, while the first counterpart of the seal-receiving channel is disposed opposite to the second counterpart of the seal-receiving channel, the seal-receiving channel is defined. The sealing interface is defined while the seal is disposed in the seal-receiving channel, and while the first and second frame members are disposed in a sealing interface-defining proximity. While the sealing interface is defined between the first and second frame members, the sealing interface resists fluid communication or fluid ingress between the first and second frame members.

SEALS FOR ELECTROCHROMIC WINDOWS
20210198939 · 2021-07-01 ·

Embodiments herein relate to methods and apparatus for preventing and mitigating the ingress of moisture into an interior region of an IGU. Various techniques are disclosed including, for example, the use of a strain relief structure around wires passing through a secondary seal, improved materials for coating the wires, and additional/improved layers for bonding the secondary seal to tape provided around a spacer.