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Phase field-elasticity analysis of austenitemartensite phase transformation at the nanoscale Finite element modeling
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Nanoscale mechanisms for high-pressure mechanochemistry a phase field study
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Phase Field Method to the Interaction of Phase Transformations and Dislocations at Nanoscale
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Phase field approach to interaction between phase transformations and plasticity at the nanoscale at large strains
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Synthesis of Zeolite/Magnetite Nanocomposite Nanocomposite and a Fast Experimental Determination of Its Specific Surface Area
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Synthesis of Zeolite/Magnetite Nanocomposite and a Fast Experimental Determination of Its Specific Surface Area
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Phase field simulations of plastic strain-induced phase transformations under high pressure and large shear
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A novel magnetic chitosan/clinoptilolite/magnetite nanocomposite for highly efficient removal of Pb(II) ions from aqueous solution
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Martensitic phase transformations in shape memory alloy phase field modeling with surface tension effect
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Phase field approach to dislocation evolution at large strains Computational aspects
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Interaction of Phase Transformations and Plasticity at the Nanoscale Phase Field Approach
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10.1016/j.matpr.2015.07.334 |
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Interaction between phase transformations and dislocations at the nanoscale. Part 1. General phase field approach
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10.1016/j.jmps.2015.05.005 |
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Interaction between phase transformations and dislocations at the nanoscale. Part 2 Phase field simulation examples
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10.1016/j.jmps.2015.05.006 |
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Thermodynamically consistent phase field approach to dislocation evolution at small and large strains
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10.1016/j.jmps.2015.05.009 |
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Phase transformations in nanograin materials under high pressure and plastic shear nanoscale mechanisms
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1392 - 10 |
Phase field approach to interaction of phase transformation and dislocation evolution
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Advanced phase-field approach to dislocation evolution
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Surface-induced phase transformations multiple scale and mechanics effects and morphological transitions
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Phase-field approach to martensitic phase transformations effect of martensitemartensite interface energy
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1390 - 01 |