Superplastic Forming of Advanced Metallic Materials

Superplastic Forming of Advanced Metallic Materials
Title Superplastic Forming of Advanced Metallic Materials PDF eBook
Author G Giuliano
Publisher Elsevier
Total Pages 384
Release 2011-06-27
Genre Technology & Engineering
ISBN 0857092774

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Ultra fine-grained metals can show exceptional ductility, known as superplasticity, during sheet forming. The higher ductility of superplastic metals makes it possible to form large and complex components in a single operation without joints or rivets. The result is less waste, lower weight and manufacturing costs, high precision and lack of residual stress associated with welding which makes components ideal for aerospace, automotive and other applications. Superplastic forming of advanced metallic materials summarises key recent research on this important process. Part one reviews types of superplastic metals, standards for superplastic forming, processes and equipment. Part two discusses ways of modelling superplastic forming processes whilst the final part of the book considers applications, including superplastic forming of titanium, aluminium and magnesium alloys. With its distinguished editor and international team of contributors, Superplastic forming of advanced metallic materials is a valuable reference for metallurgists and engineers in such sectors as aerospace and automotive engineering. Note: The Publishers wish to point out an error in the authorship of Chapter 3 which was originally listed as: G. Bernhart, Clément Ader Institute, France. The correct authorship is: G Bernhart, P. Lours, T. Cutard, V. Velay, Ecole des Mines Albi, France and F. Nazaret, Aurock, France. The Publishers apologise to the authors for this error. Reviews types of superplastic metals and standards for superplastic forming Discusses the modelling of superplastic forming, including mathematical and finite element modelling Examines various applications, including superplastic forming of titanium, aluminiun and magnesium alloys

Superplastic Forming

Superplastic Forming
Title Superplastic Forming PDF eBook
Author Suphal P. Agrawal
Publisher
Total Pages 112
Release 1985
Genre Technology & Engineering
ISBN

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Superplastic Flow

Superplastic Flow
Title Superplastic Flow PDF eBook
Author K.A. Padmanabhan
Publisher Springer Science & Business Media
Total Pages 374
Release 2012-12-06
Genre Technology & Engineering
ISBN 366204367X

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Superplasticity is the ability of polycrystalline materials under certain conditions to exhibit extreme tensile elongation in a nearly homogeneous/isotropic manner. Historically, this phenomenon was discovered and systematically studied by metallurgists and physicists. They, along with practising engineers, used materials in the superplastic state for materials forming applications. Metallurgists concluded that they had the necessary information on superplasticity and so theoretical studies focussed mostly on understanding the physical and metallurgi cal properties of superplastic materials. Practical applications, in contrast, were led by empirical approaches, rules of thumb and creative design. It has become clear that mathematical models of superplastic deformation as well as analyses for metal working processes that exploit the superplastic state are not adequate. A systematic approach based on the methods of mechanics of solids is likely to prove useful in improving the situation. The present book aims at the following. 1. Outline briefly the techniques of mechanics of solids, particularly as it applies to strain rate sensitive materials. 2. Assess the present level of investigations on the mechanical behaviour of superplastics. 3. Formulate the main issues and challenges in mechanics ofsuperplasticity. 4. Analyse the mathematical models/constitutive equations for superplastic flow from the viewpoint of mechanics. 5. Review the models of superplastic metal working processes. 6. Indicate with examples new results that may be obtained using the methods of mechanics of solids.

Superplastic Forming of Advanced Metallic Materials

Superplastic Forming of Advanced Metallic Materials
Title Superplastic Forming of Advanced Metallic Materials PDF eBook
Author G Giuliano
Publisher Woodhead Publishing
Total Pages 0
Release 2011-06-27
Genre Technology & Engineering
ISBN 9781845697532

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Ultra fine-grained metals can show exceptional ductility, known as superplasticity, during sheet forming. The higher ductility of superplastic metals makes it possible to form large and complex components in a single operation without joints or rivets. The result is less waste, lower weight and manufacturing costs, high precision and lack of residual stress associated with welding which makes components ideal for aerospace, automotive and other applications. Superplastic forming of advanced metallic materials summarises key recent research on this important process. Part one reviews types of superplastic metals, standards for superplastic forming, processes and equipment. Part two discusses ways of modelling superplastic forming processes whilst the final part of the book considers applications, including superplastic forming of titanium, aluminium and magnesium alloys. With its distinguished editor and international team of contributors, Superplastic forming of advanced metallic materials is a valuable reference for metallurgists and engineers in such sectors as aerospace and automotive engineering. Note: The Publishers wish to point out an error in the authorship of Chapter 3 which was originally listed as: G. Bernhart, Clément Ader Institute, France. The correct authorship is: G Bernhart, P. Lours, T. Cutard, V. Velay, Ecole des Mines Albi, France and F. Nazaret, Aurock, France. The Publishers apologise to the authors for this error.

Superplastic Forming/Diffusion Bonding Technology of Titanium Alloys

Superplastic Forming/Diffusion Bonding Technology of Titanium Alloys
Title Superplastic Forming/Diffusion Bonding Technology of Titanium Alloys PDF eBook
Author Zhiqiang Li
Publisher Springer Nature
Total Pages 289
Release 2023-10-26
Genre Technology & Engineering
ISBN 9819939097

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This book provides a comprehensive illustration to the superplastic forming/diffusion bonding (SPF/DB) technology developed over decades of research on titanium alloys, process modeling, and its application. SPF/DB technology plays key roles in building aviation components with complicated structures, with highly beneficial effects when well designed. With the ever-increasing demand on components with multiple layers, there is an urgent need for an updated assessment of traditional and modern SPF/DB processing methods. Success critically depends on making the most practical and effective choice of SPF/DB method for a given application. The book introduces titanium and titanium alloys, SPF/DB processing and its modeling, and applications for building typical single or multiple layer(s) structures. Particular attention is paid to illustrating the microstructure evolution during SPF/DB processes. The information for making technical decisions about optimal choice of measurement and evaluation methods is also given in the book. Each chapter follows a focused and pragmatic format. Fully illustrated throughout, the book presents the state of the art in SPF/DB technology in a manner that makes it useful for engineers to improve the established forming processes and quality of components. This book is an essential reading material for industrial practitioners, academic researchers and postgraduates.

Superplasticity and Superplastic Forming

Superplasticity and Superplastic Forming
Title Superplasticity and Superplastic Forming PDF eBook
Author C. Howard Hamilton
Publisher
Total Pages 730
Release 1988
Genre Technology & Engineering
ISBN

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Superplastic Forming

Superplastic Forming
Title Superplastic Forming PDF eBook
Author Donato Sorgente
Publisher Trans Tech Publications Ltd
Total Pages 70
Release 2020-06-23
Genre Technology & Engineering
ISBN 3035736219

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Selected peer-reviewed full text papers from 13th European Conference on Superplastic Forming (EuroSPF 2019) Selected, peer-reviewed papers from the 13th European Conference on Superplastic Forming (EuroSPF 2019), September 11-13, 2019, Matera, Italy