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Superplasticity: Common Basis for a Near-Ubiquitous Phenomenon: Engineering Materials

Autor K. A. Padmanabhan, S. Balasivanandha Prabu, R. R. Mulyukov, Ayrat Nazarov, R. M. Imayev, S. Ghosh Chowdhury
en Limba Engleză Hardback – 21 dec 2018
This book combines the perspectives of materials science of Superplasticity, on the one hand, and those of design and mechanics, on the other, in order to provide a holistic view of materials, design, mechanics and performance which will lead to useful solutions of societal benefits, in addition to providing great intellectual challenges. After considering the experimental evidence for superplasticity in different classes of materials, the book discusses the physics-based models, along with their advantages and limitations. Then, the analyses for superplastic forming available in the framework of continuum mechanics, finite element analysis and numerical simulations are presented. Finally, the authors highlight some successful industrial applications.

This book is recommended as a text book for courses on Superplasticity and as supplementary use for courses on Materials Processing, Manufacturing, High Temperature Deformation, Nanotechnology and Mechanical Behavior of Materials. Persons working in Department of Materials Science and Engineering, Physics, Mechanics, Mechanical Engineering, Aerospace Engineering, Metallurgy, Ceramics and Geo-sciences are likely to find the book to be useful. It is also recommended as a reference source for practicing engineers involved in the design, processing and manufacture of industrial components, which exploit the unique properties associated with superplastic materials.
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Specificații

ISBN-13: 9783642319563
ISBN-10: 3642319564
Pagini: 350
Ilustrații: XIX, 526 p. 258 illus., 55 illus. in color.
Dimensiuni: 155 x 235 mm
Greutate: 0.94 kg
Ediția:1st ed. 2018
Editura: Springer Berlin, Heidelberg
Colecția Springer
Seria Engineering Materials

Locul publicării:Berlin, Heidelberg, Germany

Public țintă

Research

Cuprins

Historical Introduction.- Mechanics of Superplastic Deformation and Assessment of Superplastic Performance.- Structural Superplasticity in Different Classes of Materials.- Environmental Superplasticity.- Theories of Superplasticity.- Industrial Applications of Superplasticity.

Notă biografică

Prof. K.A. Padmanabhan is an Indian academician currently working as the Member (Physical Sciences), Research and Innovation Advisory Board & Advisor, TCS, and Aditya Birla S&T Company. He is a former Director, Indian Institute of Technology, Kanpur India.

Textul de pe ultima copertă

This book combines the perspectives of materials science of Superplasticity, on the one hand, and those of design and mechanics, on the other, in order to provide a holistic view of materials, design, mechanics and performance which will lead to useful solutions of societal benefits, in addition to providing great intellectual challenges. After considering the experimental evidence for superplasticity in different classes of materials, the book discusses the physics-based models, along with their advantages and limitations. Then, the analyses for superplastic forming available in the framework of continuum mechanics, finite element analysis and numerical simulations are presented. Finally, the authors highlight some successful industrial applications.

This book is recommended as a text book for courses on Superplasticity and as supplementary use for courses on Materials Processing, Manufacturing, High Temperature Deformation, Nanotechnology and Mechanical Behaviour of Materials.  Persons working in Department of Materials Science and Engineering, Physics, Mechanics, Mechanical Engineering, Aerospace Engineering, Metallurgy, Ceramics and Geo-sciences are likely to find the book to be useful. It is also recommended as a reference source for practicing engineers involved in the design, processing and manufacture of industrial components, which exploit the unique properties associated with superplastic materials.

Caracteristici

Combines the perspectives of materials science of Superplasticity with those of design and mechanics Highlights successful industrial applications Addresses superplasticity from a universal physical viewpoint