P-177L: Late-News Poster: Development of High Strength Chemically Strengthened Glass
Newly developed chemically strengthened glass, T2X‐1, is demonstrated. T2X‐1 has high strength and excellent ion‐exchange properties. Fracture strength of T2X‐1 is 20% higher than conventional Alumino‐silicate glass (CX‐01). T2X‐1 has twice as fast ion‐exchange speed and durable compressive stress a...
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Published in | SID International Symposium Digest of technical papers Vol. 45; no. 1; pp. 1240 - 1243 |
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Main Authors | , , , , |
Format | Journal Article |
Language | English |
Published |
Campbell
Blackwell Publishing Ltd
01.06.2014
Wiley Subscription Services, Inc |
Subjects | |
Online Access | Get full text |
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Abstract | Newly developed chemically strengthened glass, T2X‐1, is demonstrated. T2X‐1 has high strength and excellent ion‐exchange properties. Fracture strength of T2X‐1 is 20% higher than conventional Alumino‐silicate glass (CX‐01). T2X‐1 has twice as fast ion‐exchange speed and durable compressive stress against four times more Na+ contamination in molten KNO3 than conventional Alumino‐silicate glass (CX‐01). |
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AbstractList | Newly developed chemically strengthened glass, T2X-1, is demonstrated. T2X-1 has high strength and excellent ion-exchange properties. Fracture strength of T2X-1 is 20% higher than conventional Alumino-silicate glass (CX-01). T2X-1 has twice as fast ion-exchange speed and durable compressive stress against four times more Na+ contamination in molten KNO3 than conventional Alumino-silicate glass (CX-01). Newly developed chemically strengthened glass, T2X‐1, is demonstrated. T2X‐1 has high strength and excellent ion‐exchange properties. Fracture strength of T2X‐1 is 20% higher than conventional Alumino‐silicate glass (CX‐01). T2X‐1 has twice as fast ion‐exchange speed and durable compressive stress against four times more Na + contamination in molten KNO 3 than conventional Alumino‐silicate glass (CX‐01). Newly developed chemically strengthened glass, T2X-1, is demonstrated. T2X-1 has high strength and excellent ion-exchange properties. Fracture strength of T2X-1 is 20% higher than conventional Alumino-silicate glass (CX-01). T2X-1 has twice as fast ion-exchange speed and durable compressive stress against four times more Na super(+) contamination in molten KNO sub(3) than conventional Alumino-silicate glass (CX-01). |
Author | Ohji, Masahiko Murata, Takashi Yamazaki, Hiroki Kawamoto, Kosuke Miwa, Shinkichi |
Author_xml | – sequence: 1 givenname: Kosuke surname: Kawamoto fullname: Kawamoto, Kosuke organization: Nippon Electric Glass Co., Ltd., Shiga, Japan – sequence: 2 givenname: Takashi surname: Murata fullname: Murata, Takashi organization: Nippon Electric Glass Co., Ltd., Shiga, Japan – sequence: 3 givenname: Shinkichi surname: Miwa fullname: Miwa, Shinkichi organization: Nippon Electric Glass Co., Ltd., Shiga, Japan – sequence: 4 givenname: Masahiko surname: Ohji fullname: Ohji, Masahiko organization: Nippon Electric Glass Co., Ltd., Shiga, Japan – sequence: 5 givenname: Hiroki surname: Yamazaki fullname: Yamazaki, Hiroki organization: Nippon Electric Glass Co., Ltd., Shiga, Japan |
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Snippet | Newly developed chemically strengthened glass, T2X‐1, is demonstrated. T2X‐1 has high strength and excellent ion‐exchange properties. Fracture strength of... Newly developed chemically strengthened glass, T2X-1, is demonstrated. T2X-1 has high strength and excellent ion-exchange properties. Fracture strength of... |
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SubjectTerms | Aluminosilicates Aluminum silicates chemically strengthened glass Compressive properties Contamination cover glass Fracture strength Glass High strength ion-exchange property |
Title | P-177L: Late-News Poster: Development of High Strength Chemically Strengthened Glass |
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