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- W2016281520 abstract "Chemically strengthened glass is finding increasing use in handheld, IT and TV cover glass applications. Chemicallystrengthened glass, particularly with high (>600MPa) compressive stress (CS) and deeper depth of layer (DOL), enableto retain higher strength after damage than non-strengthened glass when its surface is abraded. Corning Gorilla® Glasshas particularly proven to be advantageous over competition in this attribute. However, due to high compressive stress(CS) and Central Tension (CT) cutting ion-exchanged glass is extremely difficult and often unmanageable where everthe applications require dicing the chemically strengthened mother glass into smaller parts. We at Corning havedeveloped a CO 2 laser scribe and break method (LSB) to separate a single chemically strengthened glass sheet intoplurality of devices. Furthermore, CO 2 laser scribe and break method enables debris-free separation of glass with highedge strength due to its mirror-like edge finish. We have investigated laser scribe and break of chemically strengthenedglass with surface compressive stress greater than 600 MPa. In this paper we present the results of CO 2 scribe and breakmethod and underlying laser scribing mechanisms. We demonstrated cross-scribe repetitively on GEN 2 size chemicallystrengthened glass substrates. Specimens for edge strength measurements of different thickness and CS/DOL glass wereprepared using the laser scribe and break technique. The specimens were tested using the standard 4-point bend methodand the results are presented." @default.
- W2016281520 created "2016-06-24" @default.
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- W2016281520 date "2011-02-10" @default.
- W2016281520 modified "2023-09-23" @default.
- W2016281520 title "CO2 laser scribe of chemically strengthened glass with high surface compressive stress" @default.
- W2016281520 doi "https://doi.org/10.1117/12.874925" @default.
- W2016281520 hasPublicationYear "2011" @default.
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