A transmitted ultrasonic field fitting method determines crystallographic texture for arbitrary thicknesses and general anisotropy using Hashin-Shtrikman homogenization and GPU optimization, with validation against diffraction measurements.
A generalized spherical harmonic deconvolution to obtain texture of cubic materials from ultrasonicwavespeed.JournaloftheMechanicsandPhysicsofSolids,83:221–242
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Identifiability limits in ultrasonic microstructure characterization are governed by forward-map structure and intrinsic stochastic variability, with combined observables improving conditioning through complementary sensitivities.
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Ultrasonic determination of crystallographic texture by transmitted field fitting regardless of medium dispersivity
A transmitted ultrasonic field fitting method determines crystallographic texture for arbitrary thicknesses and general anisotropy using Hashin-Shtrikman homogenization and GPU optimization, with validation against diffraction measurements.
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Identifiability Limits in Ultrasonic Microstructure Characterisation: A Canonical and Stochastic Framework
Identifiability limits in ultrasonic microstructure characterization are governed by forward-map structure and intrinsic stochastic variability, with combined observables improving conditioning through complementary sensitivities.