Mechanical, thermal, and physical properties of Mg–Ca compounds in the framework of the modified embedded-atom method

Author:

Groh Sébastien

Funder

European Union

Ministry of Science and Art of Saxony (SMWK)

Publisher

Elsevier BV

Subject

Mechanics of Materials,Biomedical Engineering,Biomaterials

Reference58 articles.

1. Application of texture simulation to understand mechanical behavior of Mg and solid solution alloys containing Li and Y;Agnew;Acta Mater.,2001

2. Alam, M., and Groh, S., 2014. From the unstable stacking fault energy to the mobility of edge dislocation in Li: continuum versus atomistic (In preparation).

3. Empirical potential-energy function for calcium solids and cluster;Andersson;Phys. Rev. B,1994

4. Experimental equations of state for calcium, strontium, and barium metals to 20kbar from 4 to 295K;Anderson;Phys. Rev. B,1990

5. Atomic-scale investigation of point defects and hydrogen-solute atmospheres on the edge dislocation mobility in alpha iron;Bhatia;J. Appl. Phys.,2014

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