Analysis and mathematical simulation of motion of dislocations in aluminum single crystals

Author:

Arakelyan M. M.

Publisher

Allerton Press

Subject

General Physics and Astronomy

Reference13 articles.

1. Suzuki, T., Yoshinaga, H., and Takeuchi, S., Dislocation Dynamics and Plasticity, Tokyo: Syokabo, 1986.

2. Hirth, J. P. and Lofe, J., Theory of Dislocations, New York: McGraw-Hill, 1968.

3. Melik-Shakhnazarov, V.A., Mirzoeva, I.I., and Naskidashvili, I.A., Pis’ma v ZhETF, 1986, vol. 43, p. 247

4. Petukhov, B.V. and Pokrovskiy, V.L., ZhETF, 1972, vol. 63, p. 634.

5. Feynman, R.P. and Hibbs, R., Quantum Mechanics and Path Integrals, New York: Mcgraw-Hill, 1965.

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1. Numerical Simulation of the Movement of Frenkel–Kontorova Dislocations in Aluminum Single Crystals at Low Temperatures;Journal of Contemporary Physics (Armenian Academy of Sciences);2018-10

2. Study of the Influence of Impurity and Lattice Friction on the Expansion Dynamics of Dislocation Loops in FCC Metals;IOP Conference Series: Materials Science and Engineering;2017-08

3. Software for Mathematical Modeling of Plastic Deformation in FCC Metals;IOP Conference Series: Materials Science and Engineering;2017-08

4. Multi-soliton method for removal of misfit dislocations from functional area of heterostructures;Journal of Contemporary Physics (Armenian Academy of Sciences);2016-10

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