DOE OSTI · 2570020
Isochoric Phase Transitions in Tin
Abstract
Any sufficiently rapid physical process, such as a phase transition, proceeds isochorically (at constant density) because elastic relaxation is not instanta neous; it takes a finite time for an elastic relaxation wave to cross a finite specimen. If the post-transition state is less dense than the pre-transition state then the material is left in compression and will relax by expansion. The resulting rarefaction waves will interact and put the sample into tension; it may fracture. A similar process limits the amplitude to which piezoelectrics may be driven without failure, although the elastic state is more complex than isotropic expansion.
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Katz, Jonathan I. [Los Alamos National Laboratory (LANL), Los Alamos, NM (United States)]. 2025-06-05. Isochoric Phase Transitions in Tin. https://doi.org/10.2172/2570020
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