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2 edition of High temperature aluminides and intermetallics found in the catalog.

High temperature aluminides and intermetallics

International ASM Conference on High Temperature Aluminides and Intermetallics (2nd 1991 San Diego, Calif.)

High temperature aluminides and intermetallics

proceedings of the Second International ASM Conference on High Temperature Aluminides and Intermetallics, September 16-19, 1991, San Diego, CA, USA

by International ASM Conference on High Temperature Aluminides and Intermetallics (2nd 1991 San Diego, Calif.)

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Published by Elsevier Applied Science in London, New York .
Written in English

    Subjects:
  • Heat resistant materials -- Congresses.,
  • Aluminum alloys -- Congresses.,
  • Intermetallic compounds -- Congresses.,
  • Titanium alloys -- Congresses.,
  • Titanium alloys -- Effect of high temperatures on.

  • Edition Notes

    Statementeditors, S.H. Whang, D.P. Pope, and C.T. Liu.
    GenreCongresses.
    ContributionsWhang, Sung-Hyun, 1936-, Pope, D. P., Liu, C. T. 1937-, ASM International.
    Classifications
    LC ClassificationsTA418.26 .I52 1991
    The Physical Object
    Paginationxii, 746 p. :
    Number of Pages746
    ID Numbers
    Open LibraryOL1714817M
    ISBN 101851668225
    LC Control Number92017107

      High-temperature environmental embrittlement of thermomechanically processed TiAl-based intermetallic alloys. Metallurgical and Materials Transactions A, Cited by: A March meeting provided a forum for scientists to share information on progress in gamma TiAl alloys. Selected papers from the meeting, 77 in all, are presented here, and cover applications, fundamentals, alloy design and development, processing, joining, microstructure-property evaluation, an.

      There would be considerable benefits in developing new structural materials where high use temperatures and strength coupled with low density are minimum capabilities. Nickel and titanium aluminides exhibit considerable potential for near-term application in various branches of modern industry due to the number of property advantages they possess including low density, high melting temperature Cited by: 3. High-Temperature Deformation of Uniaxially Aligned Lamellar TiAl/Ti3Al Work Hardening Characteristics and Recovery of Gamma Base Titanium Aluminides Yield Stress Anomaly for 1/2[]{} Slip in γ-Titanium Aluminide.

    The intermetallic-based alloys for high-temperature applications are introduced. General characteristics of intermetallics are followed by identification of nickel and iron aluminides as the most practical alloys for commercial applications. High-temperature characterization of reactively processed nanostructure nickel aluminide intermetallics Article in Journal of Alloys and Compounds (1–2) .


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High temperature aluminides and intermetallics by International ASM Conference on High Temperature Aluminides and Intermetallics (2nd 1991 San Diego, Calif.) Download PDF EPUB FB2

The high temperature air oxidation of titanium aluminide intermetallics with small additions of silicon, niobium and a combination of silicon and niobium was studied in a temperature range between and K.

There was less weight gain. High Temperature Aluminides and Intermetallics. Proceedings of the Second International ASM Conference on High Temperature Aluminides and Intermetallics, September 16–19,San Diego, CA, USA S.H. Whang, D.P. Pope and C.T. Liu (Eds.). Aluminides, a unique class of ordered intermetallic materials, possesses many attributes like low densities, high melting points, and good high-temperature strength that make them an attractive material for high-temperature structural application.

High Temperature Aluminides and Intermetallics This volume of proceedings is concerned with an increasingly important area, that of intermetallics and high temperature aluminides, which has recently been attracting a great deal of attention.

Nearly papers presented at the meeting held in San Diego in September are reproduced here. This book gives a sound review of the present knowledge of the oxidation kinetics and mechanisms of intermetallics. Especially Ti- Ni- and Fe-aluminides are treated in detail by experts from Europe, USA and Japan.

Part I: Intermetallics Modeling of Combined High‐Temperature Oxidation and Nitridation under Isothermal and Thermal‐Cycling Conditions (Pages: ) Andreas Schimke.

The high-temperature deformation behavior of the Mo silicides depends on composition, crystal structure, character of bonding and orientation, microstructural constitution (nature of phases present and volume fraction), and grain size.

High Temperature Corrosion Behaviour of Iron Aluminides and Iron‐Aluminium‐Chromium Alloys. Search for more papers by this author. Book Editor(s): Prof. Grabke. Max‐Planck‐Institut für Eisenforschung, Max‐Planck‐Straße 1, Düsseldorf, Germany.

Search for more papers by this author. Titanium aluminides are considered as advance materials which fall in the class of intermetallics. Excellent elevated temperature properties, low density, high.

High temperature fatigue behaviour of intermetallics Статья. Опубликована в журнале Sadhana Vol. 28, Parts 3 & 4, June/August pp. Next chapter. in book. Materials Science and Engineering, () 3 9 8 - 4 0 1 High temperature strength of niobium aluminide intermetallics and J. Tien Strategic Materials Research and Development Laboratory, ETC II RoomThe University of Texas at Austin, Austin, TX (USA) S.

Uejo and S. Kambara Vacuum Metallurgical Materials Cited by: Vigorous activity has been present in the research and development of high-temperature structural intermetallics for the last one and a half decades. Some alloys based on Ni 3 Al and iron aluminides are currently used for some structural applications such as furnace fixtures 1, 2.

There are several potential applications that have been Cited by: They are relatively light, with densities about 75–85 % that of iron, and have very high specific elastic moduli (E/ρ). Room temperature mechanical strength is good, similar to that of ferritic steels, with reasonable ductility for intermetallics, but which becomes low for aluminum contents near the Fe 3 Al and FeAl stoichiometries [1, 2, 3].

A select group of aluminides and silicides has shown significant promise for high temperature structural applications owing to their high melting temperatures, as well as their ability to retain.

Get this from a library. High temperature aluminides & intermetallics: proceedings of the Symposium on High Temperature Aluminides & Intermetallics.

[Sung-Hyun Whang; Minerals, Metals and Materials Society.; ASM International.;]. Not Available adshelp[at] The ADS is operated by the Smithsonian Astrophysical Observatory under NASA Cooperative Agreement NNX16AC86ACited by: 8. Get this from a library.

High temperature aluminides and intermetallics: proceedings of the Second International ASM Conference on High Temperature Aluminides and Intermetallics, September, San Diego, CA, USA.

[Sung-Hyun Whang; D P Pope; C T Liu; S C Huang; ASM International.;] -- This volume of proceedings is concerned with an increasingly important area, that of intermetallics.

Abstract. The need for materials for very high-temperature applications with a simultaneous desire for low density, a balance of mechanical properties (e.g., creep resistance and low-temperature damage tolerance), and environmental resistance has directed research beyond the Fe- Ni- and Ti-aluminides.

Oikawa / Creep in titanium aluminides /MPa 1 / (4 "1 Fig. Examples of stress and temperature dependence of minimum creep rate in Timol.%Al [5].

Structure change Small new grains around original grain boundaries and at the crossing point of twin bands within grains have been observed in samples which were deformed in region up to Cited by: Degradation resulting from environmental effects on the properties of high-temperature intermetallics has recently stimulated much interest in the materials science community.

Most notably, iron, nickel, and titanium aluminides were found to be more ductile at room temperature when tested in vacuum or dry oxygen as compared to laboratory air. Environmental oxidation. Vedula K, Stephens JR () B2 aluminides for high temperature applications. In: Stoloff NS, Koch CC, Liu CT, Izumi O (eds) Proceedings of High Temperature Ordered Intermetallics II, Materials Research Society Symposium, vol Materials Research Society, Warrendale, PAUSA, pp – Google Scholar.

At room temperature, yield strength is a high as MPa and rupture strength reaches MPa. Specific stiffness is higher than that of most conventional engineering alloys, but hardness and wear resistance are higher.

This handbook is an excellent reference for materials scientists and engineers needing to gain more knowledge about these engineering materials.

Following introductory chapters on the fundamental materials properties of titanium, readers will find comprehensive descriptions of the development, processing and properties of modern titanium alloys.