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Finite Elastic Strain of Cubic Crystals

1947/06/01 by Francis Birch · 3 citations
Engineering · Mathematics · #Elasticity and Material Modeling #Elasticity and Wave Propagation #Geotechnical and Geomechanical Engineering #Compressibility #Finite strain theory #Hydrostatic pressure #Lattice (music) #Hydrostatic equilibrium #Condensed matter physics #Strain (injury) #Infinitesimal #Physics #Cubic crystal system #Symmetry (geometry) #Materials science #Infinitesimal strain theory #Elasticity (physics) #Thermodynamics #Finite element method #Mathematical analysis #Quantum mechanics #Mathematics #Geometry

paper · doi:10.1103/physrev.71.809

openalex publication_date 1947/06/01 · openalex created_date 2025/10/10 · openalex updated_date 2026/08/06

Abstract

Murnaghan's theory of finite strain is developed for a medium of cubic symmetry subjected to finite hydrostatic compression, plus an arbitrary homogeneous infinitesimal strain. The free energy is developed for cubic symmetry to include terms of the third order in the strain components. The effect of pressure upon the second-order elastic constants is found and compared with experiment, with particular reference to the compressibility; the pressure-volume relation in several approximations is compared with the measurements to 100,000 kg/cm2. The simplest approximation is shown to give a satisfactory account of most of the experimental data. The results are also compared with some of the calculations based on Born's lattice theory.

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