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Titlebook: Ordered Intermetallics; Physical Metallurgy C. T. Liu,R. W. Cahn,G. Sauthoff Book 1992 Springer Science+Business Media Dordrecht 1992 Meta

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Book 1992peratures in hostile environments. Atpresent, there is a worldwide interest in intermetallics, andextensive efforts have been devoted to intermetallic research anddevelopment in the U.S., Japan, European countries, and other nations.As a result, significant advances have been made in all areas ofint
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Phase Stability, and Cohesive, Electronic and Mechanical Properties of Intermetallic Compoundsties that may be related to the crucial ductility issue in high temperature intermetallics. Differences between observed ductility properties of related systems may relate to their differing electronic and bonding properties, particularly the nature of p-d hybridization and the directional charge distributions of the states near the Fermi energy.
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Locking and Unlocking of Screws and Superkinks, and the Yield Stress Anomaly in L12 Alloystheory accounts for the mechanical properties, including the small strain-rate sensitivity of the yield stress, and explains many of the electron microscope observations. The application of the theory to deformation of thin foils in the electron microscope is also discussed.
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Critical Phenomena at Surfaces and Interfacesat phase transitions in the bulk. Wetting phenomena in three dimensions belong to the last category (iii). Some recent theoretical results for such phenomena are also discussed: (a) Wetting of a moving interface; (b) Wetting in the 3-dimensional Ising model; and (c) Wetting of an inhomogeneous substrate.
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Temperature and Composition Dependent Deformation in γ-Titanium Aluminideso non-glide planes are responsible for the hardening above 800K. Other potential mechanisms for the hardening are discussed. The composition dependence of TiAl on mechanical properties at RT in various ternary γ-titanium aluminides is reviewed.
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