Thin glass plate processing apparatus and method
US-2024317626-A1 · Sep 26, 2024 · US
US10343249B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10343249-B2 |
| Application number | US-201715494215-A |
| Country | US |
| Kind code | B2 |
| Filing date | Apr 21, 2017 |
| Priority date | Apr 22, 2016 |
| Publication date | Jul 9, 2019 |
| Grant date | Jul 9, 2019 |
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Thin glass elements with improved edge strength are provided—from a sheet glass element that has two opposite parallel faces and an edge connecting the faces. The sheet glass element has a thickness of at most 700 μm. At least a portion of the edge is defined by an edge surface portion that is convexly curved, so that at least one of the faces merges into the edge surface portion, wherein a curved arc of the edge surface portion has a length that is at least 1/30 of the thickness of the sheet glass element. In the region of the convex curvature, the edge surface portion has indentations in the form of furrows.
Opening claim text (preview).
What is claimed is: 1. A sheet glass element comprising: two opposite parallel faces; an edge connecting the two faces; a thickness between the two faces of at most 700 μm, the edge having an edge surface portion that is convexly curved, so that at least one of the two faces merges into the edge surface portion, the edge surface portion having a curved arc with a length that is at least 1/30 of the thickness; and indentations in the edge surface portion, the indentations having a form of furrows with a length greater than a width and a depth thereof, the depth being at least 10 nm and at most 5 μm, wherein, due to the furrows, existing or emerging cracks will influence each other so that stress intensity at ends of the cracks is reduced. 2. The sheet glass element of claim 1 , wherein the depth is at most 1 μm. 3. The sheet glass element of claim 1 , wherein the edge surface portion has a radius of curvature which is at least 1/40 of the thickness, the radius of curvature being the radius of a circle fitted to the starting, halfway and end points of the curved arc. 4. The sheet glass element of claim 1 , wherein, between the edge surface portion and an area of the face adjacent to the edge surface portion, an angle between tangents thereto are perpendicular to a curvature direction of the edge surface portion is at most 45°. 5. The sheet glass element of claim 4 , wherein the angle is at most 10°. 6. The sheet glass element of claim 1 , wherein the furrows intersect each other. 7. The sheet glass element of claim 6 , wherein the furrows extend obliquely or perpendicularly to each other. 8. The sheet glass element of claim 1 , wherein the furrows have a distribution of orientation that includes one or more preferred orientations. 9. The sheet glass element of claim 1 , wherein the edge comprises two convexly curved edge surface portions, each one merging into a respective one of the two faces, wherein between the edge surface portions there is another surface portion of the edge that extends therebetween, which is rectilinear in cross section and which has a surface extending perpendicularly to the two faces. 10. The sheet glass element of claim 1 , wherein the sheet glass element is configured for a use selected from the group consisting of a thin film storage element, a rechargeable lithium-based thin film storage element, a support for an electronic component, a support for an optical component, a layer material for a composite material, an interposer element for spatial redistribution of electrical connections, a cover glass of an electronic display, a cover glass for a touch-sensitive screen, a mobile phone part, a television set part, a mirror substrate, an encapsulation, a sequencing element, a biological filter, and a cell growth base plate. 11. The sheet glass element of claim 1 , wherein the furrows have a depth of not more than 500 nm.
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