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2019 | OriginalPaper | Buchkapitel

35. Mechanical Behavior of Ta at Extreme Strain-Rates

verfasst von : Daniel Casem, Daniel Magagnosc, Jonathan Ligda, Brian Schuster, Timothy Walter

Erschienen in: Dynamic Behavior of Materials, Volume 1

Verlag: Springer International Publishing

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Abstract

The compressive stress-strain response of a commercially pure (99.98%) Ta was investigated at strain-rates ranging from 0.001/s to 500 k/s. Strain-rates up to 20 k/s were obtained using conventional load frames and Kolsky bar methods. The higher strain-rates were obtained using optically instrumented miniature Kolsky bars. Because these experiments require sample sizes as small as ∼30 um, a fine grain structure was desired. To achieve this, we study a Ta billet that was processed by ECAE to produce an ultrafine grain structure. The billets were subsequently annealed at 1203 K under high vacuum for 2 h to coarsen the grain size to approximately 2 um. The as-worked and annealed microstructures were investigated by electron backscatter diffraction to verify the grain structure. A strong rate dependence is observed over this range of strain-rates, although there is a discrepancy between data at similar strain-rates using different sample sizes. This discrepancy is the subject of on-going investigation.

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Metadaten
Titel
Mechanical Behavior of Ta at Extreme Strain-Rates
verfasst von
Daniel Casem
Daniel Magagnosc
Jonathan Ligda
Brian Schuster
Timothy Walter
Copyright-Jahr
2019
DOI
https://doi.org/10.1007/978-3-319-95089-1_35

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