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This is the first book to generalize and analyze the extensive experimental and theoretical results on the phase composition, structure, and properties of aluminum alloys containing scandium. The effects of scandium on these properties are studied from a physico- chemical viewpoint. The authors present binary, ternary, and more complex phase diagrams for these alloys and consider in detail recrystallization, superplastic behavior, and decomposition of supersaturated solid solutions and the effects of solidification conditions on phase equilibria.
The microstructure stability for aluminum alloys containing scandium is estimated, based on a quantitative analysis of the alloys' structure and properties. The relation between the structure and properties of alloys with differing phase compositions, and the acting hardening mechanisms are discussed. The authors also give some practical recommendations for alloying aluminum alloys with scandium. The experimental results presented in this book have provi
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This is the first book to generalize and analyze the extensive experimental and theoretical results on the phase composition, structure, and properties of aluminum alloys containing scandium. The effects of scandium on these properties are studied from a physico- chemical viewpoint. The authors present binary, ternary, and more complex phase diagrams for these alloys and consider in detail recrystallization, superplastic behavior, and decomposition of supersaturated solid solutions and the effects of solidification conditions on phase equilibria.
The microstructure stability for aluminum alloys containing scandium is estimated, based on a quantitative analysis of the alloys' structure and properties. The relation between the structure and properties of alloys with differing phase compositions, and the acting hardening mechanisms are discussed. The authors also give some practical recommendations for alloying aluminum alloys with scandium. The experimental results presented in this book have provi
Atsiliepimai