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US Patent 10472483 Silicone porous body and method of producing the same

Patent 10472483 was granted and assigned to Nitto Denko on November, 2019 by the United States Patent and Trademark Office.

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Is a
Patent
Patent

Patent attributes

Current Assignee
Nitto Denko
Nitto Denko
Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
Patent Number
10472483
Date of Patent
November 12, 2019
Patent Application Number
15539926
Date Filed
December 25, 2015
Patent Citations Received
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US Patent 11891549 Double-sided adhesive layer-equipped optical laminate
0
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US Patent 11505667 Laminated film roll and method of producing the same
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US Patent 11618807 Film with void spaces bonded through catalysis and method of producing the same
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US Patent 11674004 Laminated film, optical element, and image display
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US Patent 11460610 Optical laminate, method of producing optical laminate, optical element, and image display
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US Patent 11524481 Low refractive index layer, laminated film, method for producing low refractive index layer, method for producing laminated film, optical element, and image display device
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US Patent 11536877 Laminated optical film, method of producing laminated optical film, optical element, and image display
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US Patent 10815355 Silicone porous body and method of producing the same
Patent Primary Examiner
‌
Kara B Boyle
Patent abstract

The present invention provides, for example, a silicone porous body having a porous structure with less cracks and a high proportion of void space as well as having a strength. The silicone porous body of the present invention includes silicon compound microporous particles, wherein the silicon compound microporous particles are chemically bonded by catalysis. For example, the abrasion resistance measured with BEMCOT® is in the range from 60% to 100%, and the folding endurance measured by the MIT test is 100 times or more. The silicone porous body can be produced, for example, by forming the precursor of the silicone porous body using sol containing pulverized products of a gelled silicon compound and then chemically bonding the pulverized products contained in the precursor of the silicone porous body. The chemical bond among the pulverized products is preferably a chemical crosslinking bond among the pulverized products, for example.

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