Laminated glass and method of mounting laminated glass

US10414130B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-10414130-B2
Application numberUS-201314418919-A
CountryUS
Kind codeB2
Filing dateJul 31, 2013
Priority dateJul 31, 2012
Publication dateSep 17, 2019
Grant dateSep 17, 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

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

There is provided laminated glass which is high in heat shielding properties. The laminated glass according to the present invention is provided with a first laminated glass member, a second laminated glass member and an interlayer film arranged between the first and second laminated glass members; the interlayer film is provided with an infrared ray reflection layer which reflects infrared rays, a first resin layer which is arranged on a first surface side of the infrared ray reflection layer and contains a thermoplastic resin, and a second resin layer which is arranged on a second surface side of the infrared ray reflection layer and contains a thermoplastic resin; and the infrared ray transmittance in the wavelength of 780 to 2100 nm of the whole layer composed of the first laminated glass member and the first resin layer is higher than the infrared ray transmittance in the wavelength of 780 to 2100 nm of the whole layer composed of the first laminated glass member and the second resin layer.

First claim

Opening claim text (preview).

The invention claimed is: 1. A laminated glass comprising a first laminated glass member, a second laminated glass member and an interlayer film arranged between the first laminated glass member and the second laminated glass member, the interlayer film being provided with an infrared ray reflection layer which reflects infrared rays, a first resin layer which is arranged on a first surface side of the infrared ray reflection layer and contains a polyvinyl acetal resin, a plasticizer, an ultraviolet ray shielding agent and an oxidation inhibitor, and a second resin layer which is arranged on a second surface side opposite to the first surface of the infrared ray reflection layer and contains a polyvinyl acetal resin, a plasticizer, an ultraviolet ray shielding agent, an oxidation inhibitor and heat shielding compounds, the first layer further containing one or more heat shielding compounds or not containing a heat shielding compound, the heat shielding compounds of the second resin layer comprising metal oxide particles and at least one of a phthalocyanine compound, a naphthalocyanine compound, and an anthracyanine compound, the content in % by weight of the one or more heat shielding compounds in the first resin layer is smaller than the content in % by weight of the heat shielding compounds in the second resin layer by 005% by weight or more, the content of the oxidation inhibitor in 100% by weight of the first resin layer being 0.1% by weight or more and 2% by weight or less and the content of the oxidation inhibitor in 100% by weight of the second resin layer being 0.1% by weight or more and 2% by weight or less, the content of the metal oxide particles in 100% by weight of the second resin layer being 0.1% by weight or more and 6% by weight or less, the first laminated glass member being arranged on the outside of the first resin layer in the interlayer film, the second laminated glass member being arranged on the outside of the second resin layer in the interlayer film, and the infrared ray transmittance in the wavelength of 780 to 2100 nm of the whole layer composed of the first laminated glass member and the first resin layer being higher than the infrared ray transmittance in the wavelength of 780 to 2100 nm of the whole layer composed of the second laminated glass member and the second resin layer. 2. The laminated glass according to claim 1 , wherein the infrared ray transmittance in the wavelength of 780 to 2100 nm of the first resin layer is higher than the infrared ray transmittance in the wavelength of 780 to 2100 nm of the second resin layer, or the infrared ray transmittance in the wavelength of 780 to 2100 nm of the first laminated glass member is higher than the infrared ray transmittance in the wavelength of 780 to 2100 nm of the second laminated glass member. 3. The laminated glass according to claim 1 , wherein the infrared ray transmittance in the wavelength of 780 to 2100 nm of the first resin layer is higher than the infrared ray transmittance in the wavelength of 780 to 2100 nm of the second resin layer. 4. The laminated glass according to claim 1 , wherein the infrared ray transmittance in the wavelength of 780 to 2100 nm of the first laminated glass member is higher than the infrared ray transmittance in the wavelength of 780 to 2100 nm of the second laminated glass member. 5. The laminated glass according to claim 1 , wherein the infrared ray transmittance in the wavelength of 780 to 2100 nm of the first resin layer is higher than the infrared ray transmittance in the wavelength of 780 to 2100 nm of the second resin layer, and the infrared ray transmittance in the wavelength of 780 to 2100 nm of the first laminated glass member is higher than the infrared ray transmittance in the wavelength of 780 to 2100 nm of the second laminated glass member. 6. The laminated glass according to claim 1 , wherein the infrared ray reflection layer is a resin film with metal foil, a multilayer laminated film in which a metal layer and a dielectric layer are formed on a resin layer, a multilayer resin film or a liquid crystal film. 7. The laminated glass according to claim 1 , wherein the metal oxide particles are tin-doped indium oxide particles or tungsten oxide particles. 8. A method of mourning laminated glass according to claim 1 for a building or a vehicle on an opening part between an outer space and an inner space into which heat rays are made incident from the outer space, comprising the step of mounting the laminated glass on the opening part so that the first laminated glass member is positioned at the outer space side and the second laminated glass member is positioned at the inner space side. 9. The laminated glass according to claim 1 , wherein each ultraviolet ray shielding agent is a benzotriazole compound, a benzophenone compound, a triazine compound, a malonic acid ester compound, an oxalic anilide compound, or a benzoate compound. 10. The laminated glass according to claim 1 , wherein the content of the ultraviolet ray shielding agent in 100% by weight of the first resin layer is 0.1% by weight or more. 11. The laminated glass according to claim 1 , wherein the content of the ultraviolet ray shielding agent in 100% by weight of the first resin layer is 0.1% by weight or more and 0.8% by weight or less. 12. The laminated glass according to claim 1 , wherein the content of the ultraviolet ray shielding agent in 100% by weight of the second resin layer is 0.1% by weight or more. 13. The laminated glass according to claim 1 , wherein the content of the ultraviolet ray shielding agent in 100% by weight of the second resin layer is 0.1% by weight or more and 0.8% by weight or less. 14. The laminated glass according to claim 1 , wherein the interlayer film further comprises a fluorescent brightening agent. 15. The laminated glass according to claim 1 , wherein the at least one of a phthalocyanine compound, a naphthalocyanine compound, and an anthracyanine compound contains a vanadium atom or a copper atom and is selected from the group consisting of naphthalocyanine, a derivative of naphthalocyanine, anthracyanine, and a derivative of anthracyanine.

Assignees

Inventors

Classifications

  • comprising at least one layer of organic material · CPC title

  • comprising UV absorbers or stabilizers, e.g. antioxidants · CPC title

  • comprising vinyl {(co)polymers; comprising acrylic (co)polymers} · CPC title

  • Assembling or joining · CPC title

  • Buildings or parts thereof · CPC title

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What does patent US10414130B2 cover?
There is provided laminated glass which is high in heat shielding properties. The laminated glass according to the present invention is provided with a first laminated glass member, a second laminated glass member and an interlayer film arranged between the first and second laminated glass members; the interlayer film is provided with an infrared ray reflection layer which reflects infrared ray…
Who is the assignee on this patent?
Sekisui Chemical Co Ltd
What technology area does this patent fall under?
Primary CPC classification B32B17/10036. Mapped technology areas include Operations & Transport.
When was this patent published?
Publication date Tue Sep 17 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 1 related publication on this page (citations in our corpus or others sharing the same primary CPC).