"Plastic Flow Macrolocalization: Autowave and Quasi-Particle"
written by Lev B. Zuev, Svetlana A. Barannikova,
published by Journal of Modern Physics, Vol.1 No.1, 2010
has been cited by the following article(s):
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[7] On Technological Uses of Local Strain Patterns of the Commercial
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[8] Effect of hydrogen on plastic strain localization of construction steels
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[9] Experimental study of plastic flow macro-scale localization process: Pattern, propagation rate, dispersion
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[10] Using a crystal as a universal generator of localized plastic flow autowaves
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[11] Investigation of the Fine Structure Localized Plastic Deformation Zone of Superconducting Cable Components
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[12] Plastic Deformation Localization of Low Carbon Steel: Hydrogen Effect
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[14] Investigation of the Fine Structure Localized Plastic Deformation Zone of Superconducting Cable Components.
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[15] The effect of hydrogen on the parameters of plastic deformation localization in low carbon steel
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[16] Об упругопластическом инварианте при деформации твердых тел
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[17] Упругопластический инвариант деформации твердых тел
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[18] Multiscale Approach to Theoretical Simulations of Materials for Nuclear Energy Applications: Fe-Cr and Zr-based Alloys
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[19] Elastoplastic invariant relation for deformation of solids
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[20] Importance of Thermally Induced Magnetic Excitations in First-principles Simulations of Elastic Properties of Transition Metal Alloys
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[21] Autowave mechanics of plastic flow in solids
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[22] Significant correlation between macroscopic and microscopic parameters for the description of localized plastic flow auto-waves in deforming alloys
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[23] Two-component model of localized plasticity autowaves and quantum properties of the same
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[24] Autowave model of plastic flow
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[25] Overall model of plasticity and failure of metals
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[26] Wave response of the solids by mechanical loading: overall model
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[27] Новая модель деформации и разрушения кристаллических твердых тел в диапазоне от нано-до монокристаллов
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