Shock compression of single-crystal austenitic FeCr18Ni12.5 stainless steel to 60 GPa

Author:

Brown Nathan P.1ORCID,Johnson Christopher R.1ORCID,Specht Paul E.1ORCID

Affiliation:

1. Sandia National Laboratories , P.O. Box 5800, Albuquerque, New Mexico 87185-1189, USA

Abstract

We measured the austenitic FeCr18Ni12.5 stainless steel Hugoniot as a function of crystallographic direction to approximately 60 GPa. We shock-compressed FeCr18Ni12.5 samples oriented along ⟨100⟩, ⟨110⟩, and ⟨111⟩ to mean stresses ranging 30.5–58.1 GPa via Ta plate impact in a large-bore powder gun and measured the free-surface velocities with laser interferometry. We unambiguously observed the largest post-shock free-surface velocity along ⟨100⟩ in each experiment, which consequently produced the lowest shock velocity along that orientation. However, the propagation of experimental uncertainties through the impedance matching scheme used to compute the shock velocity produced sufficient uncertainty overlap to preclude definitive conclusion of Hugoniot anisotropy.

Funder

U.S. Department of Energy

Publisher

AIP Publishing

Reference34 articles.

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