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Welcome to >>> MD simulator & N-body potentials | Homepage organized by Dr. Zhang | zrflanl.wordpress.com Reviews
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Homepage organized by Dr. Zhang
Publications | Welcome to >>> MD simulator & N-body potentials
https://zrflanl.wordpress.com/publications
Welcome to MD simulator and N-body potentials. Homepage organized by Dr. Zhang. T C Germann J. Wang, X. Y. Liu, and I. J. Beyerlein. Role of interface structure on the plastic response of Cu/Nb nanolaminates under shock compression: Non-equilibrium molecular dynamics simulations, Scripta Materialia 68, 114 (2013). S M Wang, X. H. Yu, Z. J. Lin, R. F. S H Sheng , R. F. Zhang. And S Veprek. Study of spinodal decomposition and formation of nc-Al. Z J Lin, Y. S. Zhao, and S. Veprek. Superhard...Z J Lin, Ho-K...
FS-TB | Welcome to >>> MD simulator & N-body potentials
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SPaSM simulator | Welcome to >>> MD simulator & N-body potentials
https://zrflanl.wordpress.com/2012/02/01/spasm-simulator
Welcome to MD simulator and N-body potentials. Homepage organized by Dr. Zhang. Movie of Shock loading of polycrystals (click to play). Permission to use this Movieis is hereby granted by R. F. Zhang and T. C. Germman. Dislocation nucleation mechanism from incoherent interfaces. Leave a Reply Cancel reply. Enter your comment here. Fill in your details below or click an icon to log in:. Address never made public). You are commenting using your WordPress.com account. ( Log Out. Blog at WordPress.com.
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zrflanl | Welcome to >>> MD simulator & N-body potentials
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Welcome to MD simulator and N-body potentials. Homepage organized by Dr. Zhang. Movie of Shock loading of polycrystals (click to play). Permission to use this Movieis is hereby granted by R. F. Zhang and T. C. Germman. Dislocation nucleation mechanism from incoherent interfaces. Atomic level understanding of dislocation nucleation mechanism from incoherent interfaces in fcc/bcc metallic nanocomposites. Role of interface structure on the plastic response of Cu/Nb nanolaminates under shock compression.
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Welcome to >>> Miedema Calculator | Homepage organized by Dr. Zhang | Page 2
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Welcome to Miedema Calculator. Homepage organized by Dr. Zhang. Comparision of Miedema and ZSL Model. Comments Off on Comparision of Miedema and ZSL Model. 1] RF Zhang, and B.X. Liu, Appl. Phys. Lett. 81, 1219 (2002). 2] RF Zhang, and B.X. Liu, Phil. Mag. Lett., 85,283 (2005). 3] RF Zhang, S.H. Sheng, and B.X. Liu, Chem. Phys. Lett. 442, 511 (2007). Comments Off on Miedema Calculator LICENSE. Permission to use this software is hereby granted under the following conditions:. 3——- [3]. 4——- [4]...If you on...
Theoretical background of formation enthalpy of statistical solid solution | Welcome to >>> Miedema Calculator
https://zrftum.wordpress.com/2009/04/06/theoretical-background-of-elastic-mismatch-enthalpy
Welcome to Miedema Calculator. Homepage organized by Dr. Zhang. Theoretical background of formation enthalpy of statistical solid solution. Comments Off on Theoretical background of formation enthalpy of statistical solid solution. M1] H Bakker, Enthalpies in Alloys: Miedema’s Semi-Empirical Model, Trans Tech Publications, Zurich, 1998. M2] D J. Eshelby, Solid State Physics (F. Seitz and D. Turnbull eds, Acdemic Press, New York, 1956), Vol. 16, 276. Notices to the applications of Miedema’s model.
Notices to the applications of Miedema’s model | Welcome to >>> Miedema Calculator
https://zrftum.wordpress.com/2009/03/27/notices-to-the-applications-of-miedemas-model
Welcome to Miedema Calculator. Homepage organized by Dr. Zhang. Notices to the applications of Miedema’s model. Comments Off on Notices to the applications of Miedema’s model. It is pleased that some people would like to use Miedema’s model to calculate the formation enthalpy. However, notices must be announced to avoid the misunderstanding of Miedema’s theory. For example, some researchers may make the following mistakes when applying the Miedema’s model. Must be the solute related quantity. In [M2][M3]...
March | 2009 | Welcome to >>> Miedema Calculator
https://zrftum.wordpress.com/2009/03
Welcome to Miedema Calculator. Homepage organized by Dr. Zhang. Notices to the applications of Miedema’s model. Comments Off on Notices to the applications of Miedema’s model. It is pleased that some people would like to use Miedema’s model to calculate the formation enthalpy. However, notices must be announced to avoid the misunderstanding of Miedema’s theory. For example, some researchers may make the following mistakes when applying the Miedema’s model. Must be the solute related quantity. In [M2][M3]...
Theoretical background of Standard formation enthalpy | Welcome to >>> Miedema Calculator
https://zrftum.wordpress.com/2009/03/13/theoretical-background-of-standard-formation-enthalpy
Welcome to Miedema Calculator. Homepage organized by Dr. Zhang. Theoretical background of Standard formation enthalpy. Comments Off on Theoretical background of Standard formation enthalpy. Where f(c) is a function of alloy composition, which has considered the effect of the chemical short-range-order (CSRO) in an ordered intermetallic compound on the formation enthalpy, and is expressed by. It should be emphasized that. The Gamma parameter is a composition-independent constant and defined as. 3] P Villa...
Publications | Welcome to >>> Miedema Calculator
https://zrftum.wordpress.com/publications
Welcome to Miedema Calculator. Homepage organized by Dr. Zhang. T C Germann J. Wang, X. Y. Liu, and I. J. Beyerlein. Role of interface structure on the plastic response of Cu/Nb nanolaminates under shock compression: Non-equilibrium molecular dynamics simulations, Scripta Materialia 68, 114 (2013). D Legut, Z. J. Lin, Y. S. Zhao, H. K. Mao, and S. Veprek. Stability and strength of transition-metal tetraborides and triborides, Physical Review Letters 108, 255502 (2012). S H Sheng , R. F. Zhang. Z J Lin, Y...
Miedema Calculator | Welcome to >>> Miedema Calculator
https://zrftum.wordpress.com/2010/12/26/link-to-miedema-calculator
Welcome to Miedema Calculator. Homepage organized by Dr. Zhang. Comments Off on Miedema Calculator. Thermodynamic modeling by Miedema Calculator. Please send e.mail to zrftum@hotmail.com to get Pass. Miedema Calculator Ver. 3.0. Miedema Calculator Ver. 2.0. Miedema Calculator Ver. 1.0. Miedema Calculator Deposit Point. Theoretical background of formation enthalpy of amorphous phase. International Journal of Plasticity. Journal of Alloys and Compounds. Materials Science and Engineering: A.
December | 2010 | Welcome to >>> Miedema Calculator
https://zrftum.wordpress.com/2010/12
Welcome to Miedema Calculator. Homepage organized by Dr. Zhang. Comments Off on Miedema Calculator. Thermodynamic modeling by Miedema Calculator. Please send e.mail to zrftum@hotmail.com to get Pass. Miedema Calculator Ver. 3.0. Miedema Calculator Ver. 2.0. Miedema Calculator Ver. 1.0. Miedema Calculator Deposit Point. International Journal of Plasticity. Journal of Alloys and Compounds. Materials Science and Engineering: A. Surface and Coatings Technology. Journal of Applied Physics.
Comparisons of ab initio, ZSL and Experiments | Welcome to >>> Miedema Calculator
https://zrftum.wordpress.com/2009/03/11/comparisons-of-ab-initio-zsl-and-experiments
Welcome to Miedema Calculator. Homepage organized by Dr. Zhang. Comparisons of ab initio, ZSL and Experiments. Comments Off on Comparisons of ab initio, ZSL and Experiments. Comparison of ab initio and ZSL model. Theoretical background of Standard formation enthalpy. International Journal of Plasticity. Journal of Alloys and Compounds. Materials Science and Engineering: A. Surface and Coatings Technology. Journal of Applied Physics. Journal of Chemical Physics. Journal of Physical Chemistry B.
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Welcome to >>> MD simulator & N-body potentials | Homepage organized by Dr. Zhang
Welcome to MD simulator and N-body potentials. Homepage organized by Dr. Zhang. Movie of Shock loading of polycrystals (click to play). Permission to use this Movieis is hereby granted by R. F. Zhang and T. C. Germman. Dislocation nucleation mechanism from incoherent interfaces. Atomic level understanding of dislocation nucleation mechanism from incoherent interfaces in fcc/bcc metallic nanocomposites. Role of interface structure on the plastic response of Cu/Nb nanolaminates under shock compression.
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