NASA NTRS · 19960003341
Shock waves data for minerals
Abstract
Shock compression of the materials of planetary interiors yields data which upon comparison with density-pressure and density-sound velocity profiles constrain internal composition and temperature. Other important applications of shock wave data and related properties are found in the impact mechanics of terrestrial planets and solid satellites. Shock wave equation of state, shock-induced dynamic yielding and phase transitions, and shock temperature are discussed. In regions where a substantial phase change in the material does not occur, the relationship between the particle velocity, U(sub p), and the shock velocity, U(sub s), is given by U(sub s) = C(sub 0) + S U(sub p), where C(sub 0) is the shock velocity at infinitesimally small particle velocity, or the ambient pressure bulk sound velocity. Numerical values for the shock wave equation of state for minerals and related materials of the solar system are provided.
Keep this discovery
Explore connections, maps & timelines
Ahrens, Thomas J., Johnson, Mary L.. 1994-05-09. Shock waves data for minerals. https://ntrs.nasa.gov/citations/19960003341
Cite the original work for its findings. Save a collection to share your selection of sources.