Size-Dependent Brittle-to-Ductile Transition in Silica Glass Nanofibers.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 26569137.
- Also identified by DOI 10.1021/acs.nanolett.5b03070.
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Abstract
Silica (SiO2) glass, an essential material in human civilization, possesses excellent formability near its glass-transition temperature (Tg > 1100 °C). However, bulk SiO2 glass is very brittle at room temperature. Here we show a surprising brittle-to-ductile transition of SiO2 glass nanofibers at room temperature as its diameter reduces below 18 nm, accompanied by ultrahigh fracture strength. Large tensile plastic elongation up to 18% can be achieved at low strain rate. The unexpected ductility is due to a free surface affected zone in the nanofibers, with enhanced ionic mobility compared to the bulk that improves ductility by producing more bond-switching events per irreversible bond loss under tensile stress. Our discovery is fundamentally important for understanding the damage tolerance of small-scale amorphous structures.
Medical subject headings
- Glass
- Nanofibers
- Silicon Dioxide
- Tensile Strength