Insulating glass unit for a refrigeration unit

US10443300B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-10443300-B2
Application numberUS-201715777899-A
CountryUS
Kind codeB2
Filing dateMar 20, 2017
Priority dateApr 5, 2016
Publication dateOct 15, 2019
Grant dateOct 15, 2019

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

    Technology tags used to group this patent with similar filings.

  7. Citations and related patents

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Abstract

Official abstract text for this publication.

An insulating glass unit suitable for a refrigeration unit is presented. The insulating glass unit includes a first pane, a second pane spaced at a distance from the first pane, a peripheral spacer frame between the first pane and the second pane, and an inner interpane space. According to one aspect, the spacer frame includes four hollow-profile polymeric spacers, which are secured between the first pane and the second pane along one of the four sides of the insulating glass. According to another aspect, the two first hollow-profile polymeric spacers are arranged along two opposing first sides of the insulating glass unit and the two second hollow-profile polymeric spacers are arranged along two opposing second sides of the insulating glass unit. According to yet another aspect, the first polymeric hollow-profile spacers contain 5% to 50% and the second polymeric hollow-profile spacers contain 0% to 0.5% reinforcement fibers.

First claim

Opening claim text (preview).

The invention claimed is: 1. An insulating glass unit for a refrigeration unit, comprising: a first pane; a second pane spaced at a distance from the first pane; a peripheral spacer frame arranged between the first pane and the second pane; and an inner interpane space, the inner interpane space delimited by the peripheral spacer frame, the first pane and the second pane, wherein the peripheral spacer frame comprises four hollow-profile polymeric spacers, each of the four hollow-profile polymeric spacers secured between the first pane and the second pane along one of four sides of the insulating glass unit via a primary sealant, first two of the four hollow-profile polymeric spacers arranged along two opposing first sides of the insulating glass unit, and second two of the four hollow-profile polymeric spacers arranged along two opposing second sides of the insulating glass unit, the first two of the four hollow-profile polymeric spacers include 5% to 50% reinforcement fibers, the second two of the four hollow-profile polymeric spacers include 0% to 0.5% reinforcement fibers, the second two hollow-profile polymeric spacers include on their outer wall a gas-tight and vapor-tight transparent barrier, wherein the transparent barrier is in the form of a transparent barrier film or a transparent barrier coating, and the transparent barrier film is a multilayer film, the multilayer film comprising at least one polymeric layer and at least one ceramic layer. 2. The insulating glass unit according to claim 1 , wherein the second two of the four hollow-profile polymeric spacers are implemented transparent. 3. The insulating glass unit according to claim 1 , wherein the hollow-profile polymeric spacers include one polymeric main body, the polymeric main body comprising: a first side wall; a second side wall arranged parallel to the first side wall; a glazing interior wall arranged perpendicular to the first and second side walls, wherein the glazing interior wall connects the first and second side walls to one another; an outer wall, the outer wall arranged substantially parallel to the glazing interior wall, wherein the outer wall connects the first and second side walls to one another; and a cavity, the cavity enclosed by the first and second side walls, the glazing interior wall, and the outer wall, wherein the cavity delimited by the first two of the four hollow-profile polymeric spacers contains a desiccant and the cavity delimited by the second two of the four hollow-profile polymeric spacers contains no desiccant. 4. The insulating glass unit according to claim 1 , wherein the first two hollow-profile polymeric spacers include, as reinforcement fibers, 15% to 40% glass fibers. 5. The insulating glass unit according to claim 1 , wherein the first two hollow-profile polymeric spacers include, as reinforcement fibers, 20% to 35% glass fibers. 6. The insulating glass unit according to claim 1 , wherein the compressive strength of the second two hollow-profile polymeric spacers is lower by 20% to 40% than that of the first two hollow-profile polymeric spacers. 7. The insulating glass unit for a refrigeration unit according to claim 1 , wherein the first two hollow-profile polymeric spacers and the second two hollow-profile polymeric spacers are secured on the first pane and the second pane via a transparent primary sealant, and wherein the outer interpane space facing the external surroundings is filled with a transparent secondary sealant. 8. The insulating glass unit according to claim 1 , wherein the multilayer film includes one polymeric layer and two ceramic layers, the two ceramic layers arranged alternatingly with the one polymeric layer. 9. A door for a refrigeration unit, comprising: i) an insulating glass unit comprising: a first pane; a second pane spaced at a distance from the first pane; a peripheral spacer frame arranged between the first pane and the second pane; and an inner interpane space, the inner interpane space delimited by the peripheral spacer frame, the first pane and the second pane, wherein the peripheral spacer frame comprises four hollow-profile polymeric spacers, each of the four hollow-profile polymeric spacers secured between the first pane and the second pane along one of four sides of the insulating glass unit via a primary sealant, first two of the four hollow-profile polymeric spacers arranged along two opposing first sides of the insulating glass unit, and second two of the four hollow-profile polymeric spacers arranged along two opposing second sides of the insulating glass unit, the first two of the four hollow-profile polymeric spacers include 5% to 50% reinforcement fibers, and the second two of the four hollow-profile polymeric spacers include 0% to 0.5% reinforcement fibers; and ii) two horizontal frame elements, wherein the horizontal frame elements are arranged along the first sides of the insulating glass unit such that the first two hollow-profile polymeric spacers are concealed, the second two hollow-profile polymeric spacers are implemented transparent, the second two hollow-profile polymeric spacers are secured via a transparent primary sealant, and a transparent secondary sealant is arranged along the second sides of the insulating glass unit in the outer interpane space. 10. A method for producing an insulating glass unit for a refrigeration unit, the insulating glass unit comprising: a first pane; a second pane spaced at a distance from the first pane; a peripheral spacer frame arranged between the first pane and the second pane; and an inner interpane space, the inner interpane space delimited by the peripheral spacer frame, the first pane and the second pane, wherein the peripheral spacer frame comprises four hollow-profile polymeric spacers, each of the four hollow-profile polymeric spacers secured between the first pane and the second pane along one of four sides of the insulating glass unit via a primary sealant, first two of the four hollow-profile polymeric spacers arranged along two opposing first sides of the insulating glass unit, and second two of the four hollow-profile polymeric spacers arranged along two opposing second sides of the insulating glass unit, the first two of the four hollow-profile polymeric spacers include 5% to 50% reinforcement fibers, the second two of the four hollow-profile polymeric spacers include 0% to 0.5% reinforcement fibers, the second two hollow-profile polymeric spacers include on their outer wall a gas-tight and vapor-tight transparent barrier, wherein the transparent barrier is in the form of a transparent barrier film or a transparent barrier coating, and the transparent barrier film is a multilayer film, the multilayer film comprising at least one polymeric layer and at least one ceramic layer, the method comprising: mounting the first pane and the second pane on the peripheral spacer frame via the primary sealant, wherein the inner interpane space and an outer interpane space are created; and filling the outer interpane space with a secondary sealant, wherein a transparent primary sealant and a transparent secondary sealant are applied along the two opposing first sides.

Assignees

Inventors

Classifications

  • consisting of multiple glazing units (units per se E06B3/66) · CPC title

  • Doors, covers (A47F3/0434 takes precedence) · CPC title

  • with glass panels · CPC title

  • of rubber, plastics or similar materials · CPC title

  • Assembling spacer elements with the panes · CPC title

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What does patent US10443300B2 cover?
An insulating glass unit suitable for a refrigeration unit is presented. The insulating glass unit includes a first pane, a second pane spaced at a distance from the first pane, a peripheral spacer frame between the first pane and the second pane, and an inner interpane space. According to one aspect, the spacer frame includes four hollow-profile polymeric spacers, which are secured between the…
Who is the assignee on this patent?
Saint Gobain
What technology area does this patent fall under?
Primary CPC classification E06B3/66319. Mapped technology areas include Fixed Constructions.
When was this patent published?
Publication date Tue Oct 15 2019 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 10 related publications on this page (citations in our corpus or others sharing the same primary CPC).