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Titlebook: Structural and Phase Stability of Alloys; J. L. Morán-López,F. Mejía-Lira,J. M. Sanchez Book 1992 Springer Science+Business Media New York

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Compatibility of Lattice Stabilities Derived by Thermochemical and First Principleslotropic transformation and experimental data could therefore be obtained for both phases. The expressions used to define the phase stability included Debye temperature and electronic specific heat terms as well as the lattice stability at zero K.
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Modeling of Invar Properties from Electronic Structure Calculationseach configurations plays an important role and is strongly related to the compositions and chemical constituents of the alloy. Moreover, it is found that anti-ferromagnetic ordering in some . iron based metallic systems prevents the formation of stable anti-invar materials. Anti-invar anomalies are predicted in Zr-V and Ti-V system.
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Alloy Surface Behavior: Experimental Methods and Resultssion,. catalysis,. microelectronics,. and self-renewing coatings.. The use of ordered alloy systems for higher temperature, high ductility applications, such as turbine blades in jet engines has generated interest in the ordered surfaces of NiA1..
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The Frontiers of High Temperature Structural Materialsintelligent materials. These composite structures are either self diagnostic, self attenuated, or both. Challenges being addressed pivot about mechanical integrity, interdiffusion and phase stability, interface engineering, and material status sensing and signal processing.
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Order-Disorder Kinetics Studied by the Path Probability Methodxation, although the free energy of the system decreases monotonically towards the equilibrium value. The thermodynamic origin of this non-monotonic behavior is discussed based on the kinetic path in a thermodynamic configuration space and in terms of an interplay between cooling rate and the spin flip probability.
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The Frontiers of High Temperature Structural Materialsthic intermetallic and ceramic compounds, as well as metal, intermetallic, and ceramic matrix composites. An emerging field, in addition to these, is intelligent materials. These composite structures are either self diagnostic, self attenuated, or both. Challenges being addressed pivot about mechani
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