Effect of surface preparation on elastic precursor decay in shocked pure lithium fluoride
- 19 May 1986
- journal article
- Published by AIP Publishing in Applied Physics Letters
- Vol. 48 (20) , 1351-1353
- https://doi.org/10.1063/1.96906
Abstract
To understand the mechanisms for elastic precursor decay in pure 〈100〉 lithium fluoride (LiF) crystals under shock loading we have examined the role of large dislocation densities produced near the crystal surfaces by sample preparation. After unsuccessfully trying various methods to produce flat and undamaged samples, we chose to harden the surfaces by inward diffusion of magnesium fluoride (MgF2). A combination of heat treatments and other procedures was developed to ensure hardened or doped surfaces with a maximum depth of 600 μm and an undoped interior. Sample characterization was carried out using dislocation etch pit, hardness, and electron microprobe measurements. A 0.24-mm sample, with MgF2 completely diffused through, gave a 16.7-kbar precursor amplitude. A 2.93-mm sample with a front diffusion layer of 0.14–0.39 mm and a back diffusion layer of 0.00–0.32 mm and undoped interior gave a precursor amplitude of 2.1 kbar. These experiments indicate that the surface damage layer does not control precursor decay in pure LiF crystals.Keywords
This publication has 10 references indexed in Scilit:
- Effects of dislocation generation at surfaces and subgrain boundaries on precursor decay in high-purity LiFJournal of Applied Physics, 1986
- Dislocation motion and generation in LiF single crystals subjected to plate impactJournal of Applied Physics, 1979
- Comparison of experimental and calculated elastic-plastic wave profiles in LiFJournal of Applied Physics, 1975
- Dislocation mechanisms for stress relaxation in shocked LiFJournal of Applied Physics, 1975
- Impact response of a shorted guard-ring quartz gauge between 20 and 26 kilobarReview of Scientific Instruments, 1974
- Strain Dependence of Longitudinal Piezoelectric, Elastic, and Dielectric Constants of-Cut QuartzPhysical Review B, 1972
- Effect of Impurity Clustering on Elastic Precursor Decay in LiFJournal of Applied Physics, 1972
- Shock-Wave Studies of PMMA, Fused Silica, and SapphireJournal of Applied Physics, 1970
- Dislocation Dynamics and Single-Crystal Constitutive Relations: Shock-Wave Propagation and Precursor DecayJournal of Applied Physics, 1970
- Dislocation Etch Pit Formation in Lithium FluorideJournal of Applied Physics, 1958