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  4. Effect of residual stress on the fracture of chemically strengthened thin aluminosilicate glass
 
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Effect of residual stress on the fracture of chemically strengthened thin aluminosilicate glass
File(s)
Effect of residual stress on the fracture of chemically strengthened thin aluminosilicate glass.pdf (1.52 MB)
Accepted version
Author(s)
Jiang, L
Wang, L
Mohagheghian, I
Li, X
Guo, X
more
Type
Journal Article
Abstract
The effect of residual stress on the fracture of chemically strengthened thin aluminosilicate glass was investigated. The large deflection problem on the flexure of thin chemically strengthened glass was solved through finite element analysis. The relationship among compressive stress (CS), central tension (CT), and the modulus of rupture of chemically strengthened thin glass was also discussed. High CS and low CT improved the flexural strength of chemically strengthened glass. However, the effect of residual stress was more complex on Weibull modulus than on strength. The effect of residual stress on the fractography of chemically strengthened thin glass was analyzed. Transparent and opaque zones were observed on the fracture surface of chemically strengthened glass. The relative thickness of the opaque zone (dOpaque/d0), which is a constant in the same fracture zone, linearly decreased with increasing fracture zone. This result indicates that the stored elastic strain energy was released with the number of transverse cracks. These results provide useful information on the failure analysis of chemically strengthened thin glass.
Date Issued
2016-09-26
Date Acceptance
2016-09-21
Citation
Journal of Materials Science, 2016, 52 (3), pp.1405-1415
URI
http://hdl.handle.net/10044/1/41114
DOI
https://www.dx.doi.org/10.1007/s10853-016-0434-2
ISSN
1573-4803
Publisher
Springer Verlag
Start Page
1405
End Page
1415
Journal / Book Title
Journal of Materials Science
Volume
52
Issue
3
Copyright Statement
© Springer Verlag 2016. The final publication is available at Springer via http://dx.doi.org/10.1007/s10853-016-0434-2.
Subjects
Materials
09 Engineering
03 Chemical Sciences
Publication Status
Published
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