Article with glass layer and glass-ceramic layer and method of making the article
US-2015251949-A1 · Sep 10, 2015 · US
US10227256B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10227256-B2 |
| Application number | US-201615094353-A |
| Country | US |
| Kind code | B2 |
| Filing date | Apr 8, 2016 |
| Priority date | Feb 28, 2013 |
| Publication date | Mar 12, 2019 |
| Grant date | Mar 12, 2019 |
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Methods for machining glass structures may be performed on fusion-drawn glass laminates having a core layer interposed between a first cladding layer and a second cladding layer. The core layer may be formed from a core glass composition having a core photosensitivity, the first cladding layer may be formed from a glass composition having a photosensitivity different from the core photosensitivity, and the second cladding layer may be formed from a glass composition having a photosensitivity different from the core photosensitivity. At least one of the core layer, the first cladding layer, and the second cladding layer is a photomachinable layer. The methods may include exposing a selected region of a photomachinable layer in the fusion-drawn laminate to ultraviolet radiation; heating the glass structure until the selected region crystallizes; and removing the crystallized material selectively from the photomachinable layer.
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What is claimed is: 1. A glass structure comprising: a first cladding layer formed from a first-clad glass composition having a first-clad photosensitivity; a second cladding layer formed from a second-clad glass composition having a second-clad photosensitivity; and a core layer interposed between the first cladding layer and the second cladding layer and formed from a core glass composition having a nonzero core photosensitivity different from the first-clad photosensitivity and the second-clad photosensitivity, wherein: the first cladding layer is fused to a first surface of the core layer and the second cladding layer is fused to a second surface of the core layer; the first cladding layer and the second cladding layer each comprises a hole structure that is substantially circular in shape; and the core layer comprises a via connecting the hole structure of the first cladding layer and the hole structure of the second cladding layer. 2. The glass structure of claim 1 , wherein each of the first cladding layer and the second cladding layer is thinner than the core layer. 3. The glass structure of claim 1 , wherein the core layer is at least partially transparent to ultraviolet (UV) radiation such that, upon exposure of the core layer to the UV radiation, the UV radiation penetrates into or through the core layer. 4. The glass structure of claim 1 , wherein: the core photosensitivity is less than at least one of the first-clad photosensitivity or the second-clad photosensitivity; and the via of the core layer is narrower than the hole structure of the first cladding layer and the hole structure of the second cladding layer. 5. A glass structure comprising: a core layer formed from a core glass composition having a core photosensitivity; a first cladding layer fused to a first surface of the core layer and formed from a first-clad glass composition having a first-clad photosensitivity different from the core photosensitivity, the first cladding layer comprising a hole structure that is substantially circular in shape; and a second cladding layer fused to a second surface of the core layer and formed from a second-clad glass composition having a second-clad photosensitivity different from the core photosensitivity, the second cladding layer comprising a hole structure that is substantially circular in shape; wherein the core layer comprises a via connecting the hole structure of the first cladding layer and the hole structure of the second cladding layer; wherein each of the first cladding layer and the second cladding layer is thinner than the core layer; and wherein the core layer is at least partially transparent to ultraviolet radiation.
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