Source truncation and exhaustion: insights from quantitative in situ TEM tensile testing.
basic_science · Level V
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- Record sourced from PubMed, PMID 21793497.
- Also identified by DOI 10.1021/nl201890s and PMC identifier 3172822.
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Abstract
A unique method for quantitative in situ nanotensile testing in a transmission electron microscope employing focused ion beam fabricated specimens was developed. Experiments were performed on copper samples with minimum dimensions in the 100-200 nm regime oriented for either single slip or multiple slip, respectively. We observe that both frequently discussed mechanisms, truncation of spiral dislocation sources and exhaustion of defects available within the specimen, contribute to high strengths and related size-effects in small volumes. This suggests that in the submicrometer range these mechanisms should be considered simultaneously rather than exclusively.