Superplasticity In Metals And Ceramics, Cambridge Solid State Science Series

J. Wadsworth, O. D. Sherby, T. G. Nieh

Superplasticity In Metals And Ceramics, Cambridge Solid State Science Series - 1
Resumo
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This book describes advances in the field of superplasticity, the ability of certain materials to undergo very large tensile strains. This phenomenon has increasing commercial applications, but also presents a fascinating scientific challenge in attempts to understand the physical mechanisms that underpin it. The authors emphasize the materials aspects of superplasticity. Beginning with a brief history of the phenomenon, they describe the two major types of superplasticity-- fine-structure and internal-stress...

Resumo

This book describes advances in the field of superplasticity, the ability of certain materials to undergo very large tensile strains. This phenomenon has increasing commercial applications, but also presents a fascinating scientific challenge in attempts to understand the physical mechanisms that underpin it. The authors emphasize the materials aspects of superplasticity. Beginning with a brief history of the phenomenon, they describe the two major types of superplasticity-- fine-structure and internal-stress superplasticity-- and discuss their operative mechanisms. They also present microstructural factors controlling the ductility and fracture in superplastic materials. Observations of superplasticity in metals (including aluminum, magnesium, iron, titanium and nickel), ceramics (including monoliths and composites), intermetallics (including iron, nickel, and titanium base), and laminates are thoroughly described. This is a valuable text for graduate students and researchers in materials science and engineering. Superplasticity in Metals and Ceramics Hardback edition by T. G. Nieh
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Características

Editora

Cambridge Univ Pr

Idiomas

Inglês

Número de páginas

273

Encadernação

Capa Dura / Hardback

Dimensão

247 x 174 x 17

Comprimento

1,842 cm

Largura

0,191 cm

Altura

2,54 cm

Peso

774 g

Data de lançamento

02/01/1997

Tema

Química industrial e/ou tecnologias de fabricação

Origem

United Kingdom

EAN

9780521561051

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