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.
Journal of the Mechanics and Physics of Solids 11(5), 357–372 (1963)
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MuMFiM is a new open-source two-scale modeling framework achieving 1000x GPU microscale speedup and near-optimal strong/weak scaling to 128 nodes on heterogeneous hardware, demonstrated on a human spine ligament.
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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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A new open source framework for multiscale modeling of fibrous materials on heterogeneous supercomputers
MuMFiM is a new open-source two-scale modeling framework achieving 1000x GPU microscale speedup and near-optimal strong/weak scaling to 128 nodes on heterogeneous hardware, demonstrated on a human spine ligament.