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3 edition of Advanced high-temperature alloys found in the catalog.

Advanced high-temperature alloys

Nicholas J. Grant Symposium: Processing and Properties of Advanced High-Temperature Alloys (1985 Massachusetts Institute of Technology)

Advanced high-temperature alloys

processing and properties : Nicholas J. Grant Symposium : proceedings of the Nicholas J. Grant Symposium, Processing and Properties of Advanced High-Temperature alloys, 16-18 June 1985, Massachusetts Institute of Technology, Cambridge, Massachusetts

by Nicholas J. Grant Symposium: Processing and Properties of Advanced High-Temperature Alloys (1985 Massachusetts Institute of Technology)

  • 172 Want to read
  • 16 Currently reading

Published by ASM in [Metals Park, Ohio?] .
Written in English

    Subjects:
  • Grant, Nicholas J.,
  • Heat resistant alloys -- Congresses.,
  • Metals -- Rapid solidification processing -- Congresses.

  • Edition Notes

    Statementedited by Samuel M. Allen, Regis M. Pelloux, Robert Widmer ; co-sponsored by Department of Materials Science and Engineering, Massachusetts Institute of Technology and Boston Chapter, American Society for Metals.
    ContributionsAllen, Samuel M., Pelloux, R. M., Widmer, Robert., Massachusetts Institute of Technology. Dept. of Materials Science and Engineering., American Society of Metals. Boston Chapter.
    Classifications
    LC ClassificationsTN700 .N53 1985
    The Physical Object
    Paginationviii, 175 p. :
    Number of Pages175
    ID Numbers
    Open LibraryOL2745678M
    ISBN 100871702223
    LC Control Number86070584

    Get this from a library! Advanced high-temperature alloys: processing and properties: Nicholas J. Grant Symposium: proceedings of the Nicholas J. Grant Symposium, Processing and Properties of Advanced High-Temperature alloys, June , Massachusetts Institute of Technology, Cambridge, Massachusetts. [Samuel M Allen; R M Pelloux; Robert Widmer; Massachusetts Institute of Technology. This new handbook presents comprehensive coverage of the corrosion behavior of aluminum and aluminum alloys, with emphasis on practical information about how to select and process these materials in order to prevent corrosion attack. Described are the characteristics of these materials and the.

    High-temperature Alloys for Industrial Applications Since , Haynes International has concentrated on the production of special alloys. The original product, cobalt-based metal-cutting tools, provided a natural entry into the high-temperature alloy field at mid-century with the . Fatigue Crack Propagation in Metals and Alloys: Microstructural Aspects and Modelling Concepts. Author(s): Prof. Dr.‐Ing. Ulrich Krupp About this book. of Materials Technology of Siegen University, Germany, and responsible for the research files fatigue and high-temperature corrosion of metals and alloys. He completed his Ph.D. in.

    Protective coating systems have been developed, mostly for niobium alloys, to permit their use in high-temperature oxidizing aerospace applications. This article discusses the properties, processing, applications, and classes of refractory metals and its alloys, namely molybdenum, tungsten, niobium, tantalum and rhenium. Stainless steels are widely used at elevated temperatures when carbon and low-alloy steels do not provide adequate corrosion resistance and/or sufficient strength at these temperatures. This article deals with the wrought stainless steels used for high temperature applications.


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Advanced high-temperature alloys by Nicholas J. Grant Symposium: Processing and Properties of Advanced High-Temperature Alloys (1985 Massachusetts Institute of Technology) Download PDF EPUB FB2

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Rote and A.E> White Freeman, J.W. title = {Advanced high-temperature alloys: Processing and properties}, author = {Allen, S.M. and Pelloux, R.M. and Widmer, R.}, abstractNote = {Achievements in high-temperature metallurgy, solidification, and metals processing are highlighted in 16 conference papers.

The. About this book The need for light-weight materials, especially in the automobile industry, created renewed interest in innovative applications of magnesium materials. This demand has resulted in increased research and development activity in companies and research institutes in order to achieve an improved property profile and better choice of.

This extensive materials selection and application book is the first of its kind. It describes a comprehensive treatment of all forms of high-temperature corrosion problems encountered in industry, especially gas turbine and aerospace, heat treating, mineral and metallurgical processing, ceramic, electronic and glass manufacturing, automotive pulp and paper waste incineration fossil fuel power Cited by: The Special Issue, “High Temperature Alloy and Intermetallic Materials”, will address advances in materials science, processing, characterization, new components development as well as the testing of new systems of materials for high temperatures, thus providing readers with up-to date information on the recent progress from different perspectives.

The Effects of Cerium and Cerium Oxide on the High Temperature Oxidation of iron-Chromium Alloys at °C in Torr O 2 T. Rhys-Jones, H. Grabke, P. Schmidt Pages Advances in High-Temperature Alloys JOM Advances in High-Temperature Alloys CHANTAL K. SUDBRACK 0 0 NASA Glenn Research Center, Brookpark Road, Cleveland, OH, USA.

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@article{osti_, title = {Advanced high-temperature alloys: Processing and properties; Proceedings of the Nicholas J. Grant Symposium, MIT, Cambridge, MA, June}, author = {Allen, S.M. and Pelloux, R.M. and Widmer, R.}, abstractNote = {Historical and advanced methods of producing, forming and polishing alloys in billets and net shapes are explored.

Attention is given to. @article{osti_, title = {High temperature corrosion of engineering alloys}, author = {Lai, G.Y.}, abstractNote = {This book describes a treatment of all forms of high temperature corrosion problems encountered in industry, especially gas turbine and aerospace; heat treating; mineral and metallurgical processing; ceramic, electronic and glass manufacturing; automotive; pulp and paper.Superalloys are unique high-temperature materials used in gas turbine engines, which display excellent resistance to mechanical and chemical degradation.

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