Advances in Superplasticity and Superplastic Forming
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Advances in Superplasticity and Superplastic Forming Proceedings of a Symposium Sponsored by the Mdmd Shaping and Forming Committee, Held at the Tm by N. Chandra

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Published by Minerals, Metals, & Materials Society .
Written in English

Subjects:

  • Materials science,
  • Metals technology / metallurgy,
  • Testing Of Materials,
  • Superplastic forming (Metal-wo,
  • Metallurgy (Specific Aspects),
  • Technology & Industrial Arts,
  • Science/Mathematics,
  • Technical & Manufacturing Trades,
  • Superplastic forming (Metal-work),
  • Material Science,
  • Congresses,
  • Superplasticity

Book details:

Edition Notes

ContributionsR. E. Goforth (Editor)
The Physical Object
FormatHardcover
Number of Pages165
ID Numbers
Open LibraryOL8377950M
ISBN 100873392507
ISBN 109780873392501

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Purchase Superplastic Forming of Advanced Metallic Materials - 1st Edition. Print Book & E-Book. ISBN , : Advances in Superplasticity and Superplastic Forming (): Eric Taleff: Books. 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.   Buy Advances in Superplasticity and Superplastic Forming: Proceedings of the International Symposium by Sanders, D.G., Dunand, D.C. (ISBN: ) from Amazon's Book Store. Everyday low prices and free delivery on eligible : Paperback.

Get this from a library! Advances in superplasticity and superplastic forming: proceedings of a symposium sponsored by the MDMD Shaping and Forming Committee, held at the TMS/ASM Materials Week, November, [N Chandra; H Garmestani; R E Goforth; Minerals, Metals and Materials Society. Shaping and Forming Committee.;]. Superplasticity. Superplasticity is the ability of some polycrystalline materials to exhibit very high elongations, equal to or greater than %, under low-flow stresses and with a high resistance to localized necking (–). From: Comprehensive Materials Processing, Related terms: Superplastic Forming; Mechanical Deformation.   Advances in superplasticity and superplastic forming: proceedings of a symposium: held during the TMS Annual Meeting, Charlotte, North Carolina, USA, March , , Volume 1: Authors: Eric M. Taleff, Minerals, Metals and Materials Society. Get this from a library! Advances in superplasticity and superplastic forming: proceedings of a symposium: held during the TMS Annual Meeting, Charlotte, North Carolina, USA, March , [Eric M Taleff; Minerals, Metals and Materials Society. Structural Materials Committee.; Minerals, Metals and Materials Society. Mechanical Behavior Committee.;.

Review from Ringgold Inc., ProtoView: These proceedings consist of 62 papers from the 11th International Conference on Superplasticity in Advanced Materials, which took place in July , at the Ecole des Mines in Albi, France. Contributed by an international group of scientists from universities, research centers, and industry, papers address advances in superplastic forming .   Read "Superplastic Forming of Advanced Metallic Materials Methods and Applications" by available from Rakuten Kobo. Ultra fine-grained metals can show exceptional ductility, known as superplasticity, during sheet forming. The higher duc Brand: Elsevier Science. In materials science, superplasticity is a state in which solid crystalline material is deformed well beyond its usual breaking point, usually over about % during tensile deformation. Such a state is usually achieved at high homologous es of superplastic materials are some fine-grained metals and ceramics. Other non-crystalline materials (amorphous) such as silica . Review from Ringgold Inc., ProtoView: A June conference brought together academic researchers and industrial practitioners to share the latest developments and applications in superplasticity and superplastic forming technology. Papers from the conference, in all, are presented in 13 sections, covering industrial applications, processing methods, material Author: Kai Feng Zhang.