№ files_lp_3_process_7_032078
Academic research paper presenting the development, validation, and calibration of a 3D dislocation-density-based crystal plasticity model to simulate monotonic and cyclic mechanical responses of artificial and natural single-crystal rock salt under different temperatures, strain rates, and crystal orientations.
Authors: Timothy J. Truster; Wadi H. Imseeh; Ran Ma; Amirsalar Moslehy; Khalid A. Alshibli
Affiliations: University of Tennessee, Knoxville, TN, USA; Columbia University, New York, NY, USA
Keywords: Rock Salt; Halite; Crystal Plasticity Modeling; Parameter Optimization
Subject: Mechanical behavior of rock salt and halite under varying temperatures, strain rates, and crystal orientations
Type of Document: Academic research paper
Methodology: 3D dislocation-density-based crystal plasticity modeling with genetic optimization calibration
Materials Studied: Artificial and natural single-crystal rock salt specimens
Testing Conditions: Triaxial extension; unconfined 1D compression; cyclic loading; varying temperatures and strain rates
References Cited: Journal of Engineering Mechanics; American Journal of Science; Rock Mechanics and Rock Engineering
Price: 8 / 10 USD
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